mirror of https://github.com/abinit/abinit.git
2407 lines
114 KiB
Plaintext
2407 lines
114 KiB
Plaintext
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.Version 10.1.4.5 of ABINIT, released Sep 2024.
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.(MPI version, prepared for a x86_64_linux_gnu13.2 computer)
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.Copyright (C) 1998-2025 ABINIT group .
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ABINIT comes with ABSOLUTELY NO WARRANTY.
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It is free software, and you are welcome to redistribute it
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under certain conditions (GNU General Public License,
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see ~abinit/COPYING or http://www.gnu.org/copyleft/gpl.txt).
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ABINIT is a project of the Universite Catholique de Louvain,
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Corning Inc. and other collaborators, see ~abinit/doc/developers/contributors.txt .
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Please read https://docs.abinit.org/theory/acknowledgments for suggested
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acknowledgments of the ABINIT effort.
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For more information, see https://www.abinit.org .
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.Starting date : Fri 13 Sep 2024.
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- ( at 19h09 )
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- input file -> /home/buildbot/ABINIT3/eos_gnu_13.2_mpich/trunk_merge-10.0/tests/TestBot_MPI1/v3_t84/t84.abi
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- output file -> t84.abo
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- root for input files -> t84i
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- root for output files -> t84o
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DATASET 1 : space group R-3 m (#166); Bravais hR (rhombohedral)
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================================================================================
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Values of the parameters that define the memory need for DATASET 1.
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intxc = 0 ionmov = 0 iscf = 7 lmnmax = 6
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lnmax = 6 mgfft = 12 mpssoang = 3 mqgrid = 3001
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natom = 2 nloc_mem = 1 nspden = 1 nspinor = 1
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nsppol = 1 nsym = 12 n1xccc = 0 ntypat = 1
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occopt = 1 xclevel = 1
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- mband = 5 mffmem = 1 mkmem = 2
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mpw = 65 nfft = 1728 nkpt = 2
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================================================================================
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P This job should need less than 1.162 Mbytes of memory.
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Rough estimation (10% accuracy) of disk space for files :
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_ WF disk file : 0.012 Mbytes ; DEN or POT disk file : 0.015 Mbytes.
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================================================================================
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DATASET 2 : space group R-3 m (#166); Bravais hR (rhombohedral)
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================================================================================
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Values of the parameters that define the memory need for DATASET 2 (RF).
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intxc = 0 iscf = -3 lmnmax = 6 lnmax = 6
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mgfft = 12 mpssoang = 3 mqgrid = 3001 natom = 2
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nloc_mem = 1 nspden = 1 nspinor = 1 nsppol = 1
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nsym = 12 n1xccc = 0 ntypat = 1 occopt = 1
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xclevel = 1
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- mband = 5 mffmem = 1 mkmem = 8
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- mkqmem = 8 mk1mem = 8 mpw = 65
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nfft = 1728 nkpt = 8
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================================================================================
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P This job should need less than 1.116 Mbytes of memory.
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Rough estimation (10% accuracy) of disk space for files :
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_ WF disk file : 0.042 Mbytes ; DEN or POT disk file : 0.015 Mbytes.
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================================================================================
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DATASET 3 : space group R-3 m (#166); Bravais hR (rhombohedral)
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================================================================================
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Values of the parameters that define the memory need for DATASET 3 (RF).
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intxc = 0 iscf = 7 lmnmax = 6 lnmax = 6
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mgfft = 12 mpssoang = 3 mqgrid = 3001 natom = 2
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nloc_mem = 1 nspden = 1 nspinor = 1 nsppol = 1
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nsym = 12 n1xccc = 0 ntypat = 1 occopt = 1
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xclevel = 1
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- mband = 5 mffmem = 1 mkmem = 8
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- mkqmem = 8 mk1mem = 8 mpw = 65
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nfft = 1728 nkpt = 8
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================================================================================
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P This job should need less than 1.129 Mbytes of memory.
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Rough estimation (10% accuracy) of disk space for files :
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_ WF disk file : 0.042 Mbytes ; DEN or POT disk file : 0.015 Mbytes.
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================================================================================
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DATASET 4 : space group R-3 m (#166); Bravais hR (rhombohedral)
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================================================================================
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Values of the parameters that define the memory need for DATASET 4.
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intxc = 0 ionmov = 0 iscf = 7 lmnmax = 6
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lnmax = 6 mgfft = 12 mpssoang = 3 mqgrid = 3001
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natom = 2 nloc_mem = 1 nspden = 1 nspinor = 1
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nsppol = 1 nsym = 12 n1xccc = 0 ntypat = 1
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occopt = 1 xclevel = 1
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- mband = 5 mffmem = 1 mkmem = 2
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mpw = 65 nfft = 1728 nkpt = 2
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================================================================================
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P This job should need less than 1.162 Mbytes of memory.
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Rough estimation (10% accuracy) of disk space for files :
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_ WF disk file : 0.012 Mbytes ; DEN or POT disk file : 0.015 Mbytes.
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================================================================================
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DATASET 5 : space group R-3 m (#166); Bravais hR (rhombohedral)
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================================================================================
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Values of the parameters that define the memory need for DATASET 5 (RF).
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intxc = 0 iscf = -3 lmnmax = 6 lnmax = 6
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mgfft = 12 mpssoang = 3 mqgrid = 3001 natom = 2
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nloc_mem = 1 nspden = 1 nspinor = 1 nsppol = 1
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nsym = 12 n1xccc = 0 ntypat = 1 occopt = 1
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xclevel = 1
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- mband = 5 mffmem = 1 mkmem = 8
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- mkqmem = 8 mk1mem = 8 mpw = 65
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nfft = 1728 nkpt = 8
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================================================================================
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P This job should need less than 1.116 Mbytes of memory.
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Rough estimation (10% accuracy) of disk space for files :
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_ WF disk file : 0.042 Mbytes ; DEN or POT disk file : 0.015 Mbytes.
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================================================================================
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DATASET 6 : space group R-3 m (#166); Bravais hR (rhombohedral)
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================================================================================
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Values of the parameters that define the memory need for DATASET 6 (RF).
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intxc = 0 iscf = 7 lmnmax = 6 lnmax = 6
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mgfft = 12 mpssoang = 3 mqgrid = 3001 natom = 2
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nloc_mem = 1 nspden = 1 nspinor = 1 nsppol = 1
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nsym = 12 n1xccc = 0 ntypat = 1 occopt = 1
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xclevel = 1
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- mband = 5 mffmem = 1 mkmem = 8
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- mkqmem = 8 mk1mem = 8 mpw = 65
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nfft = 1728 nkpt = 8
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================================================================================
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P This job should need less than 1.129 Mbytes of memory.
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Rough estimation (10% accuracy) of disk space for files :
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_ WF disk file : 0.042 Mbytes ; DEN or POT disk file : 0.015 Mbytes.
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================================================================================
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--------------------------------------------------------------------------------
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------------- Echo of variables that govern the present computation ------------
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--------------------------------------------------------------------------------
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-
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- outvars: echo of selected default values
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- iomode0 = 0 , fftalg0 =512 , wfoptalg0 = 0
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-
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- outvars: echo of global parameters not present in the input file
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- max_nthreads = 0
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-
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-outvars: echo values of preprocessed input variables --------
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acell 9.0000000000E+00 9.0000000000E+00 9.0000000000E+00 Bohr
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amu 2.08980370E+02
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asr 0
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chneut 0
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ecut 2.00000000E+00 Hartree
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- fftalg 512
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getddk1 0
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getddk2 0
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getddk3 2
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getddk4 0
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getddk5 0
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getddk6 5
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getden1 0
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getden2 1
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getden3 0
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getden4 0
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getden5 4
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getden6 0
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getwfk1 0
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getwfk2 1
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getwfk3 1
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getwfk4 0
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getwfk5 4
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getwfk6 4
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iscf1 7
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iscf2 -3
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iscf3 7
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iscf4 7
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iscf5 -3
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iscf6 7
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jdtset 1 2 3 4 5 6
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kpt1 2.50000000E-01 2.50000000E-01 2.50000000E-01
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-2.50000000E-01 2.50000000E-01 2.50000000E-01
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kpt2 2.50000000E-01 2.50000000E-01 2.50000000E-01
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-2.50000000E-01 2.50000000E-01 2.50000000E-01
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2.50000000E-01 -2.50000000E-01 2.50000000E-01
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-2.50000000E-01 -2.50000000E-01 2.50000000E-01
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2.50000000E-01 2.50000000E-01 -2.50000000E-01
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-2.50000000E-01 2.50000000E-01 -2.50000000E-01
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2.50000000E-01 -2.50000000E-01 -2.50000000E-01
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-2.50000000E-01 -2.50000000E-01 -2.50000000E-01
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kpt3 2.50000000E-01 2.50000000E-01 2.50000000E-01
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-2.50000000E-01 2.50000000E-01 2.50000000E-01
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2.50000000E-01 -2.50000000E-01 2.50000000E-01
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-2.50000000E-01 -2.50000000E-01 2.50000000E-01
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2.50000000E-01 2.50000000E-01 -2.50000000E-01
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-2.50000000E-01 2.50000000E-01 -2.50000000E-01
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2.50000000E-01 -2.50000000E-01 -2.50000000E-01
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-2.50000000E-01 -2.50000000E-01 -2.50000000E-01
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kpt4 2.50000000E-01 2.50000000E-01 2.50000000E-01
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-2.50000000E-01 2.50000000E-01 2.50000000E-01
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kpt5 2.50000000E-01 2.50000000E-01 2.50000000E-01
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-2.50000000E-01 2.50000000E-01 2.50000000E-01
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2.50000000E-01 -2.50000000E-01 2.50000000E-01
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-2.50000000E-01 -2.50000000E-01 2.50000000E-01
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2.50000000E-01 2.50000000E-01 -2.50000000E-01
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-2.50000000E-01 2.50000000E-01 -2.50000000E-01
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2.50000000E-01 -2.50000000E-01 -2.50000000E-01
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-2.50000000E-01 -2.50000000E-01 -2.50000000E-01
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kpt6 2.50000000E-01 2.50000000E-01 2.50000000E-01
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-2.50000000E-01 2.50000000E-01 2.50000000E-01
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2.50000000E-01 -2.50000000E-01 2.50000000E-01
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-2.50000000E-01 -2.50000000E-01 2.50000000E-01
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2.50000000E-01 2.50000000E-01 -2.50000000E-01
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-2.50000000E-01 2.50000000E-01 -2.50000000E-01
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2.50000000E-01 -2.50000000E-01 -2.50000000E-01
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-2.50000000E-01 -2.50000000E-01 -2.50000000E-01
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kptopt1 1
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kptopt2 3
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kptopt3 3
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kptopt4 1
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kptopt5 3
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kptopt6 3
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kptrlatt 2 0 0 0 2 0 0 0 2
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kptrlen 1.72466966E+01
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P mkmem1 2
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P mkmem2 8
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P mkmem3 8
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P mkmem4 2
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P mkmem5 8
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P mkmem6 8
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P mkqmem1 2
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P mkqmem2 8
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P mkqmem3 8
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P mkqmem4 2
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P mkqmem5 8
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P mkqmem6 8
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P mk1mem1 2
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P mk1mem2 8
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P mk1mem3 8
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P mk1mem4 2
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P mk1mem5 8
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P mk1mem6 8
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natom 2
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nband1 5
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nband2 5
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nband3 5
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nband4 5
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nband5 5
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nband6 5
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ndtset 6
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ngfft 12 12 12
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nkpt1 2
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nkpt2 8
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nkpt3 8
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nkpt4 2
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nkpt5 8
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nkpt6 8
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nqpt1 0
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nqpt2 1
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nqpt3 1
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nqpt4 0
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nqpt5 1
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nqpt6 1
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nstep 20
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nsym 12
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ntypat 1
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occ1 2.000000 2.000000 2.000000 2.000000 2.000000
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occ2 2.000000 2.000000 2.000000 2.000000 2.000000
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occ3 2.000000 2.000000 2.000000 2.000000 2.000000
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occ4 2.000000 2.000000 2.000000 2.000000 2.000000
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occ5 2.000000 2.000000 2.000000 2.000000 2.000000
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occ6 2.000000 2.000000 2.000000 2.000000 2.000000
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optdriver1 0
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optdriver2 1
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optdriver3 1
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optdriver4 0
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optdriver5 1
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optdriver6 1
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prtpot1 0
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prtpot2 1
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prtpot3 1
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prtpot4 0
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prtpot5 1
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prtpot6 1
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rfelfd1 0
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rfelfd2 2
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rfelfd3 3
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rfelfd4 0
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rfelfd5 2
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rfelfd6 3
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rfphon1 0
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rfphon2 0
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rfphon3 1
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rfphon4 0
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rfphon5 0
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rfphon6 1
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rprim1 5.5318805038E-01 0.0000000000E+00 8.3305640920E-01
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-2.7659402519E-01 4.7907490470E-01 8.3305640920E-01
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-2.7659402519E-01 -4.7907490470E-01 8.3305640920E-01
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rprim2 5.5318805038E-01 0.0000000000E+00 8.3305640920E-01
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-2.7659402519E-01 4.7907490470E-01 8.3305640920E-01
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-2.7659402519E-01 -4.7907490470E-01 8.3305640920E-01
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rprim3 5.5318805038E-01 0.0000000000E+00 8.3305640920E-01
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-2.7659402519E-01 4.7907490470E-01 8.3305640920E-01
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-2.7659402519E-01 -4.7907490470E-01 8.3305640920E-01
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rprim4 9.3264149385E-01 2.5512726623E-01 2.5512726623E-01
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2.5512726623E-01 9.3264149385E-01 2.5512726623E-01
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2.5512726623E-01 2.5512726623E-01 9.3264149385E-01
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rprim5 9.3264149385E-01 2.5512726623E-01 2.5512726623E-01
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2.5512726623E-01 9.3264149385E-01 2.5512726623E-01
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2.5512726623E-01 2.5512726623E-01 9.3264149385E-01
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rprim6 9.3264149385E-01 2.5512726623E-01 2.5512726623E-01
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2.5512726623E-01 9.3264149385E-01 2.5512726623E-01
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2.5512726623E-01 2.5512726623E-01 9.3264149385E-01
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shiftk 5.00000000E-01 5.00000000E-01 5.00000000E-01
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spgroup 166
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symrel 1 0 0 0 1 0 0 0 1 -1 0 0 0 -1 0 0 0 -1
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0 1 0 1 0 0 0 0 1 0 -1 0 -1 0 0 0 0 -1
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0 0 1 1 0 0 0 1 0 0 0 -1 -1 0 0 0 -1 0
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1 0 0 0 0 1 0 1 0 -1 0 0 0 0 -1 0 -1 0
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0 1 0 0 0 1 1 0 0 0 -1 0 0 0 -1 -1 0 0
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0 0 1 0 1 0 1 0 0 0 0 -1 0 -1 0 -1 0 0
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tolwfr1 1.00000000E-16
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tolwfr2 1.00000000E-16
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tolwfr3 1.00000000E-12
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tolwfr4 1.00000000E-16
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tolwfr5 1.00000000E-16
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tolwfr6 1.00000000E-12
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typat 1 1
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wtk1 0.25000 0.75000
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wtk2 0.12500 0.12500 0.12500 0.12500 0.12500 0.12500
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0.12500 0.12500
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wtk3 0.12500 0.12500 0.12500 0.12500 0.12500 0.12500
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0.12500 0.12500
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wtk4 0.25000 0.75000
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wtk5 0.12500 0.12500 0.12500 0.12500 0.12500 0.12500
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0.12500 0.12500
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wtk6 0.12500 0.12500 0.12500 0.12500 0.12500 0.12500
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0.12500 0.12500
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xangst1 -1.3096941300E-18 -2.5642383897E-17 2.7494845596E+00
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1.3096941300E-18 2.5642383897E-17 -2.7494845596E+00
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xangst2 -1.3096941300E-18 -2.5642383897E-17 2.7494845596E+00
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1.3096941300E-18 2.5642383897E-17 -2.7494845596E+00
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xangst3 -1.3096941300E-18 -2.5642383897E-17 2.7494845596E+00
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1.3096941300E-18 2.5642383897E-17 -2.7494845596E+00
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xangst4 1.5874156506E+00 1.5874156506E+00 1.5874156506E+00
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-1.5874156506E+00 -1.5874156506E+00 -1.5874156506E+00
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xangst5 1.5874156506E+00 1.5874156506E+00 1.5874156506E+00
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-1.5874156506E+00 -1.5874156506E+00 -1.5874156506E+00
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xangst6 1.5874156506E+00 1.5874156506E+00 1.5874156506E+00
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-1.5874156506E+00 -1.5874156506E+00 -1.5874156506E+00
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xcart1 -2.4749632235E-18 -4.8457082961E-17 5.1957728242E+00
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2.4749632235E-18 4.8457082961E-17 -5.1957728242E+00
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xcart2 -2.4749632235E-18 -4.8457082961E-17 5.1957728242E+00
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2.4749632235E-18 4.8457082961E-17 -5.1957728242E+00
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xcart3 -2.4749632235E-18 -4.8457082961E-17 5.1957728242E+00
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2.4749632235E-18 4.8457082961E-17 -5.1957728242E+00
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xcart4 2.9997808387E+00 2.9997808387E+00 2.9997808387E+00
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-2.9997808387E+00 -2.9997808387E+00 -2.9997808387E+00
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xcart5 2.9997808387E+00 2.9997808387E+00 2.9997808387E+00
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-2.9997808387E+00 -2.9997808387E+00 -2.9997808387E+00
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xcart6 2.9997808387E+00 2.9997808387E+00 2.9997808387E+00
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-2.9997808387E+00 -2.9997808387E+00 -2.9997808387E+00
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xred 2.3100000000E-01 2.3100000000E-01 2.3100000000E-01
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-2.3100000000E-01 -2.3100000000E-01 -2.3100000000E-01
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znucl 83.00000
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================================================================================
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chkinp: Checking input parameters for consistency, jdtset= 1.
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chkinp: Checking input parameters for consistency, jdtset= 2.
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chkinp: Checking input parameters for consistency, jdtset= 3.
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chkinp: Checking input parameters for consistency, jdtset= 4.
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chkinp: Checking input parameters for consistency, jdtset= 5.
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chkinp: Checking input parameters for consistency, jdtset= 6.
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================================================================================
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== DATASET 1 ==================================================================
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- mpi_nproc: 1, omp_nthreads: -1 (-1 if OMP is not activated)
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--- !DatasetInfo
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iteration_state: {dtset: 1, }
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dimensions: {natom: 2, nkpt: 2, mband: 5, nsppol: 1, nspinor: 1, nspden: 1, mpw: 65, }
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cutoff_energies: {ecut: 2.0, pawecutdg: -1.0, }
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electrons: {nelect: 1.00000000E+01, charge: 0.00000000E+00, occopt: 1.00000000E+00, tsmear: 1.00000000E-02, }
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meta: {optdriver: 0, ionmov: 0, optcell: 0, iscf: 7, paral_kgb: 0, }
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...
|
|
|
|
Exchange-correlation functional for the present dataset will be:
|
|
LDA: new Teter (4/93) with spin-polarized option - ixc=1
|
|
Citation for XC functional:
|
|
S. Goedecker, M. Teter, J. Huetter, PRB 54, 1703 (1996)
|
|
|
|
Real(R)+Recip(G) space primitive vectors, cartesian coordinates (Bohr,Bohr^-1):
|
|
R(1)= 4.9786925 0.0000000 7.4975077 G(1)= 0.1339040 0.0000000 0.0444592
|
|
R(2)= -2.4893462 4.3116741 7.4975077 G(2)= -0.0669520 0.1159642 0.0444592
|
|
R(3)= -2.4893462 -4.3116741 7.4975077 G(3)= -0.0669520 -0.1159642 0.0444592
|
|
Unit cell volume ucvol= 4.8283574E+02 bohr^3
|
|
Angles (23,13,12)= 5.72500000E+01 5.72500000E+01 5.72500000E+01 degrees
|
|
|
|
getcut: wavevector= 0.0000 0.0000 0.0000 ngfft= 12 12 12
|
|
ecut(hartree)= 2.000 => boxcut(ratio)= 2.09807
|
|
|
|
--- Pseudopotential description ------------------------------------------------
|
|
- pspini: atom type 1 psp file is /home/buildbot/ABINIT3/eos_gnu_13.2_mpich/trunk_merge-10.0/tests/Pspdir/PseudosHGH_pwteter/83bi.5.hgh
|
|
- pspatm: opening atomic psp file /home/buildbot/ABINIT3/eos_gnu_13.2_mpich/trunk_merge-10.0/tests/Pspdir/PseudosHGH_pwteter/83bi.5.hgh
|
|
- Hartwigsen-Goedecker-Hutter psp for Bi, from PRB58, 3641 (1998)
|
|
- 83.00000 5.00000 10605 znucl, zion, pspdat
|
|
3 1 2 0 2001 0.00000 pspcod,pspxc,lmax,lloc,mmax,r2well
|
|
rloc= 0.6050000
|
|
cc1 = 6.6794370; cc2 = 0.0000000; cc3 = 0.0000000; cc4 = 0.0000000
|
|
rrs = 0.6788580; h11s= 1.3776340; h22s= -0.5136970; h33s= -0.4710280
|
|
rrp = 0.7986730; h11p= 0.6555780; h22p= -0.4029320; h33p= 0.0000000
|
|
k11p= 0.3053140; k22p= -0.0231340; k33p= 0.0000000
|
|
rrd = 0.9346830; h11d= 0.3784760; h22d= 0.0000000; h33d= 0.0000000
|
|
k11d= 0.0292170; k22d= 0.0000000; k33d= 0.0000000
|
|
- Local part computed in reciprocal space.
|
|
|
|
pspatm : COMMENT -
|
|
the projectors are not normalized,
|
|
so that the KB energies are not consistent with
|
|
definition in PRB44, 8503 (1991).
|
|
However, this does not influence the results obtained hereafter.
|
|
pspatm : epsatm= 34.79471556
|
|
--- l ekb(1:nproj) -->
|
|
0 -0.901401 -0.217891 1.555038
|
|
1 -0.989901 1.571994
|
|
2 3.344673
|
|
pspatm: atomic psp has been read and splines computed
|
|
|
|
6.95894311E+02 ecore*ucvol(ha*bohr**3)
|
|
--------------------------------------------------------------------------------
|
|
|
|
_setup2: Arith. and geom. avg. npw (full set) are 65.000 65.000
|
|
|
|
================================================================================
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 1, }
|
|
solver: {iscf: 7, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-16, }
|
|
...
|
|
|
|
iter Etot(hartree) deltaE(h) residm vres2
|
|
ETOT 1 -10.677166430568 -1.068E+01 2.774E-04 2.718E+00
|
|
ETOT 2 -10.688635049216 -1.147E-02 4.636E-09 2.247E-01
|
|
ETOT 3 -10.689613347218 -9.783E-04 1.485E-05 1.661E-03
|
|
ETOT 4 -10.689618331772 -4.985E-06 1.415E-08 3.579E-05
|
|
ETOT 5 -10.689618410330 -7.856E-08 6.898E-10 4.699E-07
|
|
ETOT 6 -10.689618411209 -8.786E-10 4.777E-12 1.325E-08
|
|
ETOT 7 -10.689618411246 -3.746E-11 2.736E-13 6.857E-10
|
|
ETOT 8 -10.689618411248 -1.855E-12 7.481E-15 9.755E-12
|
|
ETOT 9 -10.689618411248 -2.309E-14 1.291E-16 1.595E-13
|
|
ETOT 10 -10.689618411248 3.553E-15 8.800E-17 2.364E-14
|
|
|
|
At SCF step 10 max residual= 8.80E-17 < tolwfr= 1.00E-16 =>converged.
|
|
|
|
Cartesian components of stress tensor (hartree/bohr^3)
|
|
sigma(1 1)= 5.28010550E-04 sigma(3 2)= 0.00000000E+00
|
|
sigma(2 2)= 5.28010550E-04 sigma(3 1)= 0.00000000E+00
|
|
sigma(3 3)= 1.02442026E-03 sigma(2 1)= 0.00000000E+00
|
|
|
|
|
|
--- !ResultsGS
|
|
iteration_state: {dtset: 1, }
|
|
comment : Summary of ground state results
|
|
lattice_vectors:
|
|
- [ 4.9786925, 0.0000000, 7.4975077, ]
|
|
- [ -2.4893462, 4.3116741, 7.4975077, ]
|
|
- [ -2.4893462, -4.3116741, 7.4975077, ]
|
|
lattice_lengths: [ 9.00000, 9.00000, 9.00000, ]
|
|
lattice_angles: [ 57.250, 57.250, 57.250, ] # degrees, (23, 13, 12)
|
|
lattice_volume: 4.8283574E+02
|
|
convergence: {deltae: 3.553E-15, res2: 2.364E-14, residm: 8.800E-17, diffor: null, }
|
|
etotal : -1.06896184E+01
|
|
entropy : 0.00000000E+00
|
|
fermie : 4.30356439E-02
|
|
cartesian_stress_tensor: # hartree/bohr^3
|
|
- [ 5.28010550E-04, 0.00000000E+00, 0.00000000E+00, ]
|
|
- [ 0.00000000E+00, 5.28010550E-04, 0.00000000E+00, ]
|
|
- [ 0.00000000E+00, 0.00000000E+00, 1.02442026E-03, ]
|
|
pressure_GPa: -2.0403E+01
|
|
xred :
|
|
- [ 2.3100E-01, 2.3100E-01, 2.3100E-01, Bi]
|
|
- [ -2.3100E-01, -2.3100E-01, -2.3100E-01, Bi]
|
|
cartesian_forces: # hartree/bohr
|
|
- [ -7.62650673E-19, -9.95146472E-19, 1.01080394E-02, ]
|
|
- [ 7.62650673E-19, 9.95146472E-19, -1.01080394E-02, ]
|
|
force_length_stats: {min: 1.01080394E-02, max: 1.01080394E-02, mean: 1.01080394E-02, }
|
|
...
|
|
|
|
Integrated electronic density in atomic spheres:
|
|
------------------------------------------------
|
|
Atom Sphere_radius Integrated_density
|
|
1 2.00000 1.23380259
|
|
2 2.00000 1.23380259
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 50.747E-18; max= 87.999E-18
|
|
reduced coordinates (array xred) for 2 atoms
|
|
0.231000000000 0.231000000000 0.231000000000
|
|
-0.231000000000 -0.231000000000 -0.231000000000
|
|
rms dE/dt= 7.5785E-02; max dE/dt= 7.5785E-02; dE/dt below (all hartree)
|
|
1 -0.075785102962 -0.075785102962 -0.075785102962
|
|
2 0.075785102962 0.075785102962 0.075785102962
|
|
|
|
cartesian coordinates (angstrom) at end:
|
|
1 -0.00000000000000 -0.00000000000000 2.74948455957311
|
|
2 0.00000000000000 0.00000000000000 -2.74948455957311
|
|
|
|
cartesian forces (hartree/bohr) at end:
|
|
1 -0.00000000000000 -0.00000000000000 0.01010803938694
|
|
2 0.00000000000000 0.00000000000000 -0.01010803938694
|
|
frms,max,avg= 5.8358793E-03 1.0108039E-02 0.000E+00 0.000E+00 0.000E+00 h/b
|
|
|
|
cartesian forces (eV/Angstrom) at end:
|
|
1 -0.00000000000000 -0.00000000000000 0.51977624010497
|
|
2 0.00000000000000 0.00000000000000 -0.51977624010497
|
|
frms,max,avg= 3.0009295E-01 5.1977624E-01 0.000E+00 0.000E+00 0.000E+00 e/A
|
|
length scales= 9.000000000000 9.000000000000 9.000000000000 bohr
|
|
= 4.762594877310 4.762594877310 4.762594877310 angstroms
|
|
prteigrs : about to open file t84o_DS1_EIG
|
|
Fermi (or HOMO) energy (hartree) = 0.04304 Average Vxc (hartree)= -0.30593
|
|
Eigenvalues (hartree) for nkpt= 2 k points:
|
|
kpt# 1, nband= 5, wtk= 0.25000, kpt= 0.2500 0.2500 0.2500 (reduced coord)
|
|
-0.35078 -0.17103 0.00738 0.00738 0.04304
|
|
prteigrs : prtvol=0 or 1, do not print more k-points.
|
|
|
|
|
|
--- !EnergyTerms
|
|
iteration_state : {dtset: 1, }
|
|
comment : Components of total free energy in Hartree
|
|
kinetic : 2.78249231857752E+00
|
|
hartree : 3.97190950908961E-01
|
|
xc : -2.61261807790169E+00
|
|
Ewald energy : -1.13058438878511E+01
|
|
psp_core : 1.44126513565306E+00
|
|
local_psp : -1.95539061074497E+00
|
|
non_local_psp : 5.63285760110259E-01
|
|
total_energy : -1.06896184112479E+01
|
|
total_energy_eV : -2.90879309905391E+02
|
|
band_energy : -1.21889787908152E+00
|
|
...
|
|
|
|
|
|
Cartesian components of stress tensor (hartree/bohr^3)
|
|
sigma(1 1)= 5.28010550E-04 sigma(3 2)= 0.00000000E+00
|
|
sigma(2 2)= 5.28010550E-04 sigma(3 1)= 0.00000000E+00
|
|
sigma(3 3)= 1.02442026E-03 sigma(2 1)= 0.00000000E+00
|
|
|
|
-Cartesian components of stress tensor (GPa) [Pressure= -2.0403E+01 GPa]
|
|
- sigma(1 1)= 1.55346041E+01 sigma(3 2)= 0.00000000E+00
|
|
- sigma(2 2)= 1.55346041E+01 sigma(3 1)= 0.00000000E+00
|
|
- sigma(3 3)= 3.01394794E+01 sigma(2 1)= 0.00000000E+00
|
|
|
|
================================================================================
|
|
== DATASET 2 ==================================================================
|
|
- mpi_nproc: 1, omp_nthreads: -1 (-1 if OMP is not activated)
|
|
|
|
|
|
--- !DatasetInfo
|
|
iteration_state: {dtset: 2, }
|
|
dimensions: {natom: 2, nkpt: 8, mband: 5, nsppol: 1, nspinor: 1, nspden: 1, mpw: 65, }
|
|
cutoff_energies: {ecut: 2.0, pawecutdg: -1.0, }
|
|
electrons: {nelect: 1.00000000E+01, charge: 0.00000000E+00, occopt: 1.00000000E+00, tsmear: 1.00000000E-02, }
|
|
meta: {optdriver: 1, rfelfd: 2, }
|
|
...
|
|
|
|
mkfilename : getwfk/=0, take file _WFK from output of DATASET 1.
|
|
|
|
mkfilename : getden/=0, take file _DEN from output of DATASET 1.
|
|
|
|
Exchange-correlation functional for the present dataset will be:
|
|
LDA: new Teter (4/93) with spin-polarized option - ixc=1
|
|
Citation for XC functional:
|
|
S. Goedecker, M. Teter, J. Huetter, PRB 54, 1703 (1996)
|
|
|
|
Real(R)+Recip(G) space primitive vectors, cartesian coordinates (Bohr,Bohr^-1):
|
|
R(1)= 4.9786925 0.0000000 7.4975077 G(1)= 0.1339040 0.0000000 0.0444592
|
|
R(2)= -2.4893462 4.3116741 7.4975077 G(2)= -0.0669520 0.1159642 0.0444592
|
|
R(3)= -2.4893462 -4.3116741 7.4975077 G(3)= -0.0669520 -0.1159642 0.0444592
|
|
Unit cell volume ucvol= 4.8283574E+02 bohr^3
|
|
Angles (23,13,12)= 5.72500000E+01 5.72500000E+01 5.72500000E+01 degrees
|
|
setup1 : take into account q-point for computing boxcut.
|
|
|
|
getcut: wavevector= 0.0000 0.0000 0.0000 ngfft= 12 12 12
|
|
ecut(hartree)= 2.000 => boxcut(ratio)= 2.09807
|
|
--------------------------------------------------------------------------------
|
|
|
|
|
|
==> initialize data related to q vector <==
|
|
|
|
The list of irreducible perturbations for this q vector is:
|
|
1) idir= 1 ipert= 3
|
|
2) idir= 2 ipert= 3
|
|
3) idir= 3 ipert= 3
|
|
|
|
================================================================================
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : derivative vs k along direction 1
|
|
The set of symmetries contains only one element for this perturbation.
|
|
symkpt : not enough symmetry to change the number of k points.
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 2, }
|
|
solver: {iscf: -3, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-16, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 -6.1449887817259 -6.145E+00 6.491E-03 0.000E+00
|
|
ETOT 2 -6.1466092112069 -1.620E-03 8.006E-07 0.000E+00
|
|
ETOT 3 -6.1466096109044 -3.997E-07 2.828E-09 0.000E+00
|
|
ETOT 4 -6.1466096113969 -4.924E-10 1.037E-12 0.000E+00
|
|
ETOT 5 -6.1466096113977 -8.207E-13 8.175E-15 0.000E+00
|
|
ETOT 6 -6.1466096113977 4.441E-15 7.604E-17 0.000E+00
|
|
|
|
At SCF step 6 max residual= 7.60E-17 < tolwfr= 1.00E-16 =>converged.
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 36.208E-18; max= 76.044E-18
|
|
dfpt_looppert : ek2= 1.5717853745E+01
|
|
f-sum rule ratio= 6.1240340665E-01
|
|
prteigrs : about to open file t84t_1WF1_EIG
|
|
Expectation of eigenvalue derivatives (hartree) for nkpt= 8 k points:
|
|
(in case of degenerate eigenvalues, averaged derivative)
|
|
kpt# 1, nband= 5, wtk= 0.12500, kpt= 0.2500 0.2500 0.2500 (reduced coord)
|
|
0.04455 -0.12738 0.01565 0.01565 0.04627
|
|
prteigrs : prtvol=0 or 1, do not print more k-points.
|
|
|
|
|
|
Eight components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 1.30650812E+01 eigvalue= 5.30945963E-01 local= -9.86528305E+00
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
kin1= -9.62566718E+00 Hartree= 0.00000000E+00 xc= 0.00000000E+00
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 2.41586549E+00 enl1= -2.66755201E+00
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -6.14660961E+00
|
|
No Ewald or frozen-wf contrib.: the relaxation energy is the total one
|
|
2DEtotal= -0.6146609611E+01 Ha. Also 2DEtotal= -0.167257753573E+03 eV
|
|
( non-var. 2DEtotal : -6.1466095922E+00 Ha)
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : derivative vs k along direction 2
|
|
The set of symmetries contains only one element for this perturbation.
|
|
symkpt : not enough symmetry to change the number of k points.
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 2, }
|
|
solver: {iscf: -3, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-16, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 -6.1449825508545 -6.145E+00 4.913E-03 0.000E+00
|
|
ETOT 2 -6.1466092082260 -1.627E-03 8.006E-07 0.000E+00
|
|
ETOT 3 -6.1466096113445 -4.031E-07 2.828E-09 0.000E+00
|
|
ETOT 4 -6.1466096118382 -4.937E-10 1.037E-12 0.000E+00
|
|
ETOT 5 -6.1466096118390 -8.296E-13 8.175E-15 0.000E+00
|
|
ETOT 6 -6.1466096118390 1.776E-15 7.604E-17 0.000E+00
|
|
|
|
At SCF step 6 max residual= 7.60E-17 < tolwfr= 1.00E-16 =>converged.
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 35.043E-18; max= 76.044E-18
|
|
dfpt_looppert : ek2= 1.5717853745E+01
|
|
f-sum rule ratio= 6.1240340668E-01
|
|
prteigrs : about to open file t84t_1WF1_EIG
|
|
Expectation of eigenvalue derivatives (hartree) for nkpt= 8 k points:
|
|
(in case of degenerate eigenvalues, averaged derivative)
|
|
kpt# 1, nband= 5, wtk= 0.12500, kpt= 0.2500 0.2500 0.2500 (reduced coord)
|
|
0.04455 -0.12738 0.01565 0.01565 0.04627
|
|
prteigrs : prtvol=0 or 1, do not print more k-points.
|
|
|
|
|
|
Eight components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 1.30650812E+01 eigvalue= 5.30945963E-01 local= -9.86528305E+00
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
kin1= -9.62566718E+00 Hartree= 0.00000000E+00 xc= 0.00000000E+00
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 2.41586549E+00 enl1= -2.66755201E+00
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -6.14660961E+00
|
|
No Ewald or frozen-wf contrib.: the relaxation energy is the total one
|
|
2DEtotal= -0.6146609612E+01 Ha. Also 2DEtotal= -0.167257753585E+03 eV
|
|
( non-var. 2DEtotal : -6.1466095926E+00 Ha)
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : derivative vs k along direction 3
|
|
The set of symmetries contains only one element for this perturbation.
|
|
symkpt : not enough symmetry to change the number of k points.
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 2, }
|
|
solver: {iscf: -3, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-16, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 -6.1449887835261 -6.145E+00 6.491E-03 0.000E+00
|
|
ETOT 2 -6.1466092112894 -1.620E-03 8.006E-07 0.000E+00
|
|
ETOT 3 -6.1466096109857 -3.997E-07 2.828E-09 0.000E+00
|
|
ETOT 4 -6.1466096114781 -4.924E-10 1.037E-12 0.000E+00
|
|
ETOT 5 -6.1466096114790 -8.198E-13 8.175E-15 0.000E+00
|
|
ETOT 6 -6.1466096114789 3.553E-15 7.604E-17 0.000E+00
|
|
|
|
At SCF step 6 max residual= 7.60E-17 < tolwfr= 1.00E-16 =>converged.
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 36.207E-18; max= 76.044E-18
|
|
dfpt_looppert : ek2= 1.5717853745E+01
|
|
f-sum rule ratio= 6.1240340665E-01
|
|
prteigrs : about to open file t84t_1WF1_EIG
|
|
Expectation of eigenvalue derivatives (hartree) for nkpt= 8 k points:
|
|
(in case of degenerate eigenvalues, averaged derivative)
|
|
kpt# 1, nband= 5, wtk= 0.12500, kpt= 0.2500 0.2500 0.2500 (reduced coord)
|
|
0.04455 -0.12738 0.01565 0.01565 0.04627
|
|
prteigrs : prtvol=0 or 1, do not print more k-points.
|
|
|
|
|
|
Eight components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 1.30650812E+01 eigvalue= 5.30945963E-01 local= -9.86528305E+00
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
kin1= -9.62566718E+00 Hartree= 0.00000000E+00 xc= 0.00000000E+00
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 2.41586549E+00 enl1= -2.66755201E+00
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -6.14660961E+00
|
|
No Ewald or frozen-wf contrib.: the relaxation energy is the total one
|
|
2DEtotal= -0.6146609611E+01 Ha. Also 2DEtotal= -0.167257753576E+03 eV
|
|
( non-var. 2DEtotal : -6.1466095923E+00 Ha)
|
|
================================================================================
|
|
|
|
---- first-order wavefunction calculations are completed ----
|
|
|
|
|
|
Total localisation tensor (bohr^2) in cartesian coordinates
|
|
WARNING : still subject to testing - especially symmetries.
|
|
direction matrix element
|
|
alpha beta real part imaginary part
|
|
1 1 1.3280860202 0.0000000000
|
|
1 2 0.0000000000 0.0000000000
|
|
1 3 -0.0000000000 0.0000000000
|
|
2 1 0.0000000000 0.0000000000
|
|
2 2 1.3280860202 0.0000000000
|
|
2 3 -0.0000000001 0.0000000000
|
|
3 1 -0.0000000000 0.0000000000
|
|
3 2 -0.0000000001 0.0000000000
|
|
3 3 6.0236459916 0.0000000000
|
|
|
|
respfn : d/dk was computed, but no 2DTE, so no DDB output.
|
|
|
|
================================================================================
|
|
== DATASET 3 ==================================================================
|
|
- mpi_nproc: 1, omp_nthreads: -1 (-1 if OMP is not activated)
|
|
|
|
|
|
--- !DatasetInfo
|
|
iteration_state: {dtset: 3, }
|
|
dimensions: {natom: 2, nkpt: 8, mband: 5, nsppol: 1, nspinor: 1, nspden: 1, mpw: 65, }
|
|
cutoff_energies: {ecut: 2.0, pawecutdg: -1.0, }
|
|
electrons: {nelect: 1.00000000E+01, charge: 0.00000000E+00, occopt: 1.00000000E+00, tsmear: 1.00000000E-02, }
|
|
meta: {optdriver: 1, rfelfd: 3, rfphon: 1, }
|
|
...
|
|
|
|
mkfilename : getwfk/=0, take file _WFK from output of DATASET 1.
|
|
|
|
mkfilename : getddk/=0, take file _1WF from output of DATASET 2.
|
|
|
|
Exchange-correlation functional for the present dataset will be:
|
|
LDA: new Teter (4/93) with spin-polarized option - ixc=1
|
|
Citation for XC functional:
|
|
S. Goedecker, M. Teter, J. Huetter, PRB 54, 1703 (1996)
|
|
|
|
Real(R)+Recip(G) space primitive vectors, cartesian coordinates (Bohr,Bohr^-1):
|
|
R(1)= 4.9786925 0.0000000 7.4975077 G(1)= 0.1339040 0.0000000 0.0444592
|
|
R(2)= -2.4893462 4.3116741 7.4975077 G(2)= -0.0669520 0.1159642 0.0444592
|
|
R(3)= -2.4893462 -4.3116741 7.4975077 G(3)= -0.0669520 -0.1159642 0.0444592
|
|
Unit cell volume ucvol= 4.8283574E+02 bohr^3
|
|
Angles (23,13,12)= 5.72500000E+01 5.72500000E+01 5.72500000E+01 degrees
|
|
setup1 : take into account q-point for computing boxcut.
|
|
|
|
getcut: wavevector= 0.0000 0.0000 0.0000 ngfft= 12 12 12
|
|
ecut(hartree)= 2.000 => boxcut(ratio)= 2.09807
|
|
--------------------------------------------------------------------------------
|
|
|
|
|
|
==> initialize data related to q vector <==
|
|
|
|
The list of irreducible perturbations for this q vector is:
|
|
1) idir= 1 ipert= 1
|
|
2) idir= 1 ipert= 4
|
|
|
|
================================================================================
|
|
|
|
The perturbation idir= 2 ipert= 1 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 3 ipert= 1 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 1 ipert= 2 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 2 ipert= 2 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 3 ipert= 2 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 2 ipert= 4 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 3 ipert= 4 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : displacement of atom 1 along direction 1
|
|
Found 2 symmetries that leave the perturbation invariant.
|
|
symkpt : the number of k-points, thanks to the symmetries,
|
|
is reduced to 6 .
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 3, }
|
|
solver: {iscf: 7, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-12, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 24.684944789866 -4.166E+01 6.108E-02 2.047E+03
|
|
ETOT 2 2.5619223014235 -2.212E+01 5.318E-03 2.141E+01
|
|
ETOT 3 2.3621853607534 -1.997E-01 5.914E-05 8.568E-01
|
|
ETOT 4 2.3549930182438 -7.192E-03 1.317E-06 4.241E-02
|
|
ETOT 5 2.3546653973012 -3.276E-04 1.144E-07 1.282E-03
|
|
ETOT 6 2.3546584500541 -6.947E-06 2.001E-09 7.221E-05
|
|
ETOT 7 2.3546580479553 -4.021E-07 2.850E-10 9.823E-07
|
|
ETOT 8 2.3546580422137 -5.742E-09 3.029E-12 1.834E-08
|
|
ETOT 9 2.3546580421089 -1.047E-10 4.545E-13 2.389E-10
|
|
|
|
At SCF step 9 max residual= 4.55E-13 < tolwfr= 1.00E-12 =>converged.
|
|
-open ddk wf file :t84o_DS2_1WF7
|
|
-open ddk wf file :t84o_DS2_1WF8
|
|
-open ddk wf file :t84o_DS2_1WF9
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 23.953E-14; max= 45.454E-14
|
|
|
|
Thirteen components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 6.88902572E+01 eigvalue= 4.57352005E+00 local= -3.75789425E+01
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
loc psp = -9.97378210E+01 Hartree= 2.05605361E+01 xc= -7.73947458E+00
|
|
note that "loc psp" includes a xc core correction that could be resolved
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 1.52882980E+01 enl1= -2.82505705E+01
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -6.39941973E+01
|
|
10,11,12 Non-relaxation contributions : frozen-wavefunctions and Ewald
|
|
fr.local= 3.54427003E+01 fr.nonlo= 1.41019542E+01 Ewald= 1.68042009E+01
|
|
13,14 Frozen wf xc core corrections (1) and (2)
|
|
frxc 1 = 0.00000000E+00 frxc 2 = 0.00000000E+00
|
|
Resulting in :
|
|
2DEtotal= 0.2354658042E+01 Ha. Also 2DEtotal= 0.640735038429E+02 eV
|
|
(2DErelax= -6.3994197347E+01 Ha. 2DEnonrelax= 6.6348855389E+01 Ha)
|
|
( non-var. 2DEtotal : 2.3546596011E+00 Ha)
|
|
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : homogeneous electric field along direction 1
|
|
The set of symmetries contains only one element for this perturbation.
|
|
symkpt : not enough symmetry to change the number of k points.
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
- dfpt_looppert: read the DDK wavefunctions from file: t84o_DS2_1WF7
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 3, }
|
|
solver: {iscf: 7, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-12, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 -136.33899759632 -1.363E+02 9.973E-02 1.116E+03
|
|
ETOT 2 -149.47609049894 -1.314E+01 2.828E-03 2.730E+01
|
|
ETOT 3 -149.75338810331 -2.773E-01 7.589E-05 5.683E-01
|
|
ETOT 4 -149.75736508345 -3.977E-03 1.237E-06 3.163E-02
|
|
ETOT 5 -149.75760895117 -2.439E-04 6.558E-08 2.345E-04
|
|
ETOT 6 -149.75761088046 -1.929E-06 1.222E-09 3.707E-06
|
|
ETOT 7 -149.75761090512 -2.466E-08 1.834E-11 8.437E-08
|
|
ETOT 8 -149.75761090561 -4.920E-10 8.681E-13 8.039E-10
|
|
|
|
At SCF step 8 max residual= 8.68E-13 < tolwfr= 1.00E-12 =>converged.
|
|
-open ddk wf file :t84o_DS2_1WF7
|
|
-open ddk wf file :t84o_DS2_1WF8
|
|
-open ddk wf file :t84o_DS2_1WF9
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 53.630E-14; max= 86.811E-14
|
|
|
|
Seven components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 4.59006746E+02 eigvalue= -6.28205829E-01 local= -4.05800970E+02
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
dotwf= -2.99515246E+02 Hartree= 2.81972948E+01 xc= -1.36246581E+01
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 8.26074277E+01 enl1= 0.00000000E+00
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -1.49757611E+02
|
|
No Ewald or frozen-wf contrib.: the relaxation energy is the total one
|
|
2DEtotal= -0.1497576109E+03 Ha. Also 2DEtotal= -0.407511183631E+04 eV
|
|
( non-var. 2DEtotal : -1.4975762278E+02 Ha)
|
|
================================================================================
|
|
|
|
---- first-order wavefunction calculations are completed ----
|
|
|
|
|
|
==> Compute Derivative Database <==
|
|
|
|
2nd-order matrix (non-cartesian coordinates, masses not included,
|
|
asr not included )
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 1 1 1 2.3546596011 0.0000000000
|
|
1 1 2 1 0.5848585072 0.0000000000
|
|
1 1 3 1 0.5848585072 0.0000000000
|
|
1 1 1 2 -2.3546882107 0.0000000000
|
|
1 1 2 2 -0.5849014238 0.0000000000
|
|
1 1 3 2 -0.5849014238 0.0000000000
|
|
1 1 1 4 -19.0491153245 0.0000000000
|
|
1 1 2 4 0.2706945602 0.0000000000
|
|
1 1 3 4 0.2706945602 0.0000000000
|
|
|
|
2 1 1 1 0.5848585072 0.0000000000
|
|
2 1 2 1 2.3546596011 0.0000000000
|
|
2 1 3 1 0.5848585072 0.0000000000
|
|
2 1 1 2 -0.5849014238 0.0000000000
|
|
2 1 2 2 -2.3546882107 0.0000000000
|
|
2 1 3 2 -0.5849014238 0.0000000000
|
|
2 1 1 4 0.2706945602 0.0000000000
|
|
2 1 2 4 -19.0491153245 0.0000000000
|
|
2 1 3 4 0.2706945602 0.0000000000
|
|
|
|
3 1 1 1 0.5848585072 0.0000000000
|
|
3 1 2 1 0.5848585072 0.0000000000
|
|
3 1 3 1 2.3546596011 0.0000000000
|
|
3 1 1 2 -0.5849014238 0.0000000000
|
|
3 1 2 2 -0.5849014238 0.0000000000
|
|
3 1 3 2 -2.3546882107 -0.0000000000
|
|
3 1 1 4 0.2706945602 0.0000000000
|
|
3 1 2 4 0.2706945602 0.0000000000
|
|
3 1 3 4 -19.0491153245 0.0000000000
|
|
|
|
1 2 1 1 -2.3546882107 -0.0000000000
|
|
1 2 2 1 -0.5849014238 -0.0000000000
|
|
1 2 3 1 -0.5849014238 -0.0000000000
|
|
1 2 1 2 2.3546596011 0.0000000000
|
|
1 2 2 2 0.5848585072 0.0000000000
|
|
1 2 3 2 0.5848585072 0.0000000000
|
|
1 2 1 4 -19.0491153245 0.0000000000
|
|
1 2 2 4 0.2706945602 0.0000000000
|
|
1 2 3 4 0.2706945602 0.0000000000
|
|
|
|
2 2 1 1 -0.5849014238 -0.0000000000
|
|
2 2 2 1 -2.3546882107 -0.0000000000
|
|
2 2 3 1 -0.5849014238 -0.0000000000
|
|
2 2 1 2 0.5848585072 0.0000000000
|
|
2 2 2 2 2.3546596011 0.0000000000
|
|
2 2 3 2 0.5848585072 0.0000000000
|
|
2 2 1 4 0.2706945602 0.0000000000
|
|
2 2 2 4 -19.0491153245 0.0000000000
|
|
2 2 3 4 0.2706945602 0.0000000000
|
|
|
|
3 2 1 1 -0.5849014238 -0.0000000000
|
|
3 2 2 1 -0.5849014238 -0.0000000000
|
|
3 2 3 1 -2.3546882107 0.0000000000
|
|
3 2 1 2 0.5848585072 0.0000000000
|
|
3 2 2 2 0.5848585072 0.0000000000
|
|
3 2 3 2 2.3546596011 0.0000000000
|
|
3 2 1 4 0.2706945602 0.0000000000
|
|
3 2 2 4 0.2706945602 0.0000000000
|
|
3 2 3 4 -19.0491153245 0.0000000000
|
|
|
|
1 4 1 1 -19.0491046137 0.0000000000
|
|
1 4 2 1 0.2706945602 0.0000000000
|
|
1 4 3 1 0.2706945602 0.0000000000
|
|
1 4 1 2 -19.0491046137 0.0000000000
|
|
1 4 2 2 0.2706945602 0.0000000000
|
|
1 4 3 2 0.2706945602 0.0000000000
|
|
1 4 1 4 -149.7576227754 0.0000000000
|
|
1 4 2 4 54.1603041749 0.0000000000
|
|
1 4 3 4 54.1603041749 0.0000000000
|
|
|
|
2 4 1 1 0.2706945602 0.0000000000
|
|
2 4 2 1 -19.0491046137 0.0000000000
|
|
2 4 3 1 0.2706945602 0.0000000000
|
|
2 4 1 2 0.2706945602 0.0000000000
|
|
2 4 2 2 -19.0491046137 0.0000000000
|
|
2 4 3 2 0.2706945602 0.0000000000
|
|
2 4 1 4 54.1603041749 0.0000000000
|
|
2 4 2 4 -149.7576227754 0.0000000000
|
|
2 4 3 4 54.1603041749 0.0000000000
|
|
|
|
3 4 1 1 0.2706945602 0.0000000000
|
|
3 4 2 1 0.2706945602 0.0000000000
|
|
3 4 3 1 -19.0491046137 0.0000000000
|
|
3 4 1 2 0.2706945602 0.0000000000
|
|
3 4 2 2 0.2706945602 0.0000000000
|
|
3 4 3 2 -19.0491046137 0.0000000000
|
|
3 4 1 4 54.1603041749 0.0000000000
|
|
3 4 2 4 54.1603041749 0.0000000000
|
|
3 4 3 4 -149.7576227754 0.0000000000
|
|
|
|
|
|
Dynamical matrix, in cartesian coordinates,
|
|
if specified in the inputs, asr has been imposed
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 1 1 1 0.0475995230 0.0000000000
|
|
1 1 2 1 -0.0000000000 0.0000000000
|
|
1 1 3 1 0.0000000000 0.0000000000
|
|
1 1 1 2 -0.0475991382 0.0000000000
|
|
1 1 2 2 0.0000000000 -0.0000000000
|
|
1 1 3 2 -0.0000000000 0.0000000000
|
|
|
|
2 1 1 1 -0.0000000000 0.0000000000
|
|
2 1 2 1 0.0475995230 0.0000000000
|
|
2 1 3 1 0.0000000000 0.0000000000
|
|
2 1 1 2 0.0000000000 -0.0000000000
|
|
2 1 2 2 -0.0475991382 -0.0000000000
|
|
2 1 3 2 0.0000000000 0.0000000000
|
|
|
|
3 1 1 1 0.0000000000 0.0000000000
|
|
3 1 2 1 -0.0000000000 0.0000000000
|
|
3 1 3 1 0.0208990824 0.0000000000
|
|
3 1 1 2 -0.0000000000 0.0000000000
|
|
3 1 2 2 0.0000000000 0.0000000000
|
|
3 1 3 2 -0.0208997610 0.0000000000
|
|
|
|
1 2 1 1 -0.0475991382 -0.0000000000
|
|
1 2 2 1 0.0000000000 0.0000000000
|
|
1 2 3 1 -0.0000000000 -0.0000000000
|
|
1 2 1 2 0.0475995230 0.0000000000
|
|
1 2 2 2 -0.0000000000 0.0000000000
|
|
1 2 3 2 0.0000000000 0.0000000000
|
|
|
|
2 2 1 1 0.0000000000 0.0000000000
|
|
2 2 2 1 -0.0475991382 0.0000000000
|
|
2 2 3 1 0.0000000000 -0.0000000000
|
|
2 2 1 2 -0.0000000000 0.0000000000
|
|
2 2 2 2 0.0475995230 0.0000000000
|
|
2 2 3 2 0.0000000000 0.0000000000
|
|
|
|
3 2 1 1 -0.0000000000 -0.0000000000
|
|
3 2 2 1 0.0000000000 -0.0000000000
|
|
3 2 3 1 -0.0208997610 -0.0000000000
|
|
3 2 1 2 0.0000000000 0.0000000000
|
|
3 2 2 2 -0.0000000000 0.0000000000
|
|
3 2 3 2 0.0208990824 0.0000000000
|
|
|
|
Dielectric tensor, in cartesian coordinates,
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 4 1 4 5.9983652425 -0.0000000000
|
|
1 4 2 4 -0.0000000000 -0.0000000000
|
|
1 4 3 4 0.0000000000 -0.0000000000
|
|
|
|
2 4 1 4 -0.0000000000 -0.0000000000
|
|
2 4 2 4 5.9983652425 -0.0000000000
|
|
2 4 3 4 -0.0000000000 -0.0000000000
|
|
|
|
3 4 1 4 0.0000000000 -0.0000000000
|
|
3 4 2 4 -0.0000000000 -0.0000000000
|
|
3 4 3 4 5.6067460525 -0.0000000000
|
|
|
|
Effective charges, in cartesian coordinates,
|
|
(from electric field response)
|
|
if specified in the inputs, charge neutrality has been imposed
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 1 1 4 1.9251567573 0.0000000000
|
|
2 1 1 4 0.0000000000 0.0000000000
|
|
3 1 1 4 -0.0000000000 0.0000000000
|
|
1 2 1 4 1.9251567573 0.0000000000
|
|
2 2 1 4 0.0000000000 0.0000000000
|
|
3 2 1 4 -0.0000000000 0.0000000000
|
|
|
|
1 1 2 4 -0.0000000000 0.0000000000
|
|
2 1 2 4 1.9251567573 0.0000000000
|
|
3 1 2 4 -0.0000000000 0.0000000000
|
|
1 2 2 4 -0.0000000000 0.0000000000
|
|
2 2 2 4 1.9251567573 0.0000000000
|
|
3 2 2 4 -0.0000000000 0.0000000000
|
|
|
|
1 1 3 4 0.0000000000 0.0000000000
|
|
2 1 3 4 0.0000000000 0.0000000000
|
|
3 1 3 4 2.0544038892 0.0000000000
|
|
1 2 3 4 0.0000000000 0.0000000000
|
|
2 2 3 4 0.0000000000 0.0000000000
|
|
3 2 3 4 2.0544038892 0.0000000000
|
|
|
|
Effective charges, in cartesian coordinates,
|
|
(from phonon response)
|
|
if specified in the inputs, charge neutrality has been imposed
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 4 1 1 1.9251584619 0.0000000000
|
|
2 4 1 1 0.0000000000 0.0000000000
|
|
3 4 1 1 -0.0000000000 0.0000000000
|
|
|
|
1 4 2 1 0.0000000000 0.0000000000
|
|
2 4 2 1 1.9251584619 0.0000000000
|
|
3 4 2 1 -0.0000000000 0.0000000000
|
|
|
|
1 4 3 1 0.0000000000 0.0000000000
|
|
2 4 3 1 0.0000000000 0.0000000000
|
|
3 4 3 1 2.0544055939 0.0000000000
|
|
|
|
1 4 1 2 1.9251584619 0.0000000000
|
|
2 4 1 2 0.0000000000 0.0000000000
|
|
3 4 1 2 -0.0000000000 0.0000000000
|
|
|
|
1 4 2 2 0.0000000000 0.0000000000
|
|
2 4 2 2 1.9251584619 0.0000000000
|
|
3 4 2 2 -0.0000000000 0.0000000000
|
|
|
|
1 4 3 2 -0.0000000000 0.0000000000
|
|
2 4 3 2 0.0000000000 0.0000000000
|
|
3 4 3 2 2.0544055939 0.0000000000
|
|
|
|
|
|
|
|
|
|
Phonon wavevector (reduced coordinates) : 0.00000 0.00000 0.00000
|
|
Phonon energies in Hartree :
|
|
-1.334699E-06 1.005042E-06 1.005044E-06 3.312450E-04 4.998994E-04
|
|
4.998994E-04
|
|
Phonon frequencies in cm-1 :
|
|
- -2.929327E-01 2.205811E-01 2.205817E-01 7.269987E+01 1.097152E+02
|
|
- 1.097152E+02
|
|
|
|
Phonon at Gamma, with non-analyticity in the
|
|
direction (cartesian coordinates) 1.00000 0.00000 0.00000
|
|
Phonon energies in Hartree :
|
|
-1.334699E-06 1.005042E-06 2.905626E-04 3.312450E-04 4.998994E-04
|
|
4.998994E-04
|
|
Phonon frequencies in cm-1 :
|
|
- -2.929327E-01 2.205811E-01 6.377111E+01 7.269987E+01 1.097152E+02
|
|
- 1.097152E+02
|
|
|
|
Phonon at Gamma, with non-analyticity in the
|
|
direction (cartesian coordinates) 0.00000 1.00000 0.00000
|
|
Phonon energies in Hartree :
|
|
-1.334699E-06 1.005044E-06 2.905626E-04 3.312450E-04 4.998994E-04
|
|
4.998994E-04
|
|
Phonon frequencies in cm-1 :
|
|
- -2.929327E-01 2.205817E-01 6.377111E+01 7.269987E+01 1.097152E+02
|
|
- 1.097152E+02
|
|
|
|
Phonon at Gamma, with non-analyticity in the
|
|
direction (cartesian coordinates) 0.00000 0.00000 1.00000
|
|
Phonon energies in Hartree :
|
|
1.005042E-06 1.005044E-06 3.207111E-04 3.312450E-04 4.998994E-04
|
|
4.998994E-04
|
|
Phonon frequencies in cm-1 :
|
|
- 2.205811E-01 2.205817E-01 7.038796E+01 7.269987E+01 1.097152E+02
|
|
- 1.097152E+02
|
|
|
|
================================================================================
|
|
== DATASET 4 ==================================================================
|
|
- mpi_nproc: 1, omp_nthreads: -1 (-1 if OMP is not activated)
|
|
|
|
|
|
--- !DatasetInfo
|
|
iteration_state: {dtset: 4, }
|
|
dimensions: {natom: 2, nkpt: 2, mband: 5, nsppol: 1, nspinor: 1, nspden: 1, mpw: 65, }
|
|
cutoff_energies: {ecut: 2.0, pawecutdg: -1.0, }
|
|
electrons: {nelect: 1.00000000E+01, charge: 0.00000000E+00, occopt: 1.00000000E+00, tsmear: 1.00000000E-02, }
|
|
meta: {optdriver: 0, ionmov: 0, optcell: 0, iscf: 7, paral_kgb: 0, }
|
|
...
|
|
|
|
Exchange-correlation functional for the present dataset will be:
|
|
LDA: new Teter (4/93) with spin-polarized option - ixc=1
|
|
Citation for XC functional:
|
|
S. Goedecker, M. Teter, J. Huetter, PRB 54, 1703 (1996)
|
|
|
|
Real(R)+Recip(G) space primitive vectors, cartesian coordinates (Bohr,Bohr^-1):
|
|
R(1)= 8.3937734 2.2961454 2.2961454 G(1)= 0.1350007 -0.0289975 -0.0289975
|
|
R(2)= 2.2961454 8.3937734 2.2961454 G(2)= -0.0289975 0.1350007 -0.0289975
|
|
R(3)= 2.2961454 2.2961454 8.3937734 G(3)= -0.0289975 -0.0289975 0.1350007
|
|
Unit cell volume ucvol= 4.8283574E+02 bohr^3
|
|
Angles (23,13,12)= 5.72500000E+01 5.72500000E+01 5.72500000E+01 degrees
|
|
|
|
getcut: wavevector= 0.0000 0.0000 0.0000 ngfft= 12 12 12
|
|
ecut(hartree)= 2.000 => boxcut(ratio)= 2.09807
|
|
--------------------------------------------------------------------------------
|
|
|
|
_setup2: Arith. and geom. avg. npw (full set) are 65.000 65.000
|
|
|
|
================================================================================
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 4, }
|
|
solver: {iscf: 7, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-16, }
|
|
...
|
|
|
|
iter Etot(hartree) deltaE(h) residm vres2
|
|
ETOT 1 -10.677166430571 -1.068E+01 2.774E-04 2.718E+00
|
|
ETOT 2 -10.688635049217 -1.147E-02 4.636E-09 2.247E-01
|
|
ETOT 3 -10.689613347220 -9.783E-04 1.485E-05 1.661E-03
|
|
ETOT 4 -10.689618331774 -4.985E-06 1.415E-08 3.579E-05
|
|
ETOT 5 -10.689618410332 -7.856E-08 6.898E-10 4.699E-07
|
|
ETOT 6 -10.689618411210 -8.786E-10 4.777E-12 1.325E-08
|
|
ETOT 7 -10.689618411248 -3.746E-11 2.736E-13 6.857E-10
|
|
ETOT 8 -10.689618411250 -1.867E-12 7.481E-15 9.755E-12
|
|
ETOT 9 -10.689618411250 -1.599E-14 1.291E-16 1.595E-13
|
|
ETOT 10 -10.689618411250 -1.243E-14 8.800E-17 2.364E-14
|
|
|
|
At SCF step 10 max residual= 8.80E-17 < tolwfr= 1.00E-16 =>converged.
|
|
|
|
Cartesian components of stress tensor (hartree/bohr^3)
|
|
sigma(1 1)= 6.93480452E-04 sigma(3 2)= 1.65469902E-04
|
|
sigma(2 2)= 6.93480452E-04 sigma(3 1)= 1.65469902E-04
|
|
sigma(3 3)= 6.93480452E-04 sigma(2 1)= 1.65469902E-04
|
|
|
|
|
|
--- !ResultsGS
|
|
iteration_state: {dtset: 4, }
|
|
comment : Summary of ground state results
|
|
lattice_vectors:
|
|
- [ 8.3937734, 2.2961454, 2.2961454, ]
|
|
- [ 2.2961454, 8.3937734, 2.2961454, ]
|
|
- [ 2.2961454, 2.2961454, 8.3937734, ]
|
|
lattice_lengths: [ 9.00000, 9.00000, 9.00000, ]
|
|
lattice_angles: [ 57.250, 57.250, 57.250, ] # degrees, (23, 13, 12)
|
|
lattice_volume: 4.8283574E+02
|
|
convergence: {deltae: -1.243E-14, res2: 2.364E-14, residm: 8.800E-17, diffor: null, }
|
|
etotal : -1.06896184E+01
|
|
entropy : 0.00000000E+00
|
|
fermie : 4.30356439E-02
|
|
cartesian_stress_tensor: # hartree/bohr^3
|
|
- [ 6.93480452E-04, 1.65469902E-04, 1.65469902E-04, ]
|
|
- [ 1.65469902E-04, 6.93480452E-04, 1.65469902E-04, ]
|
|
- [ 1.65469902E-04, 1.65469902E-04, 6.93480452E-04, ]
|
|
pressure_GPa: -2.0403E+01
|
|
xred :
|
|
- [ 2.3100E-01, 2.3100E-01, 2.3100E-01, Bi]
|
|
- [ -2.3100E-01, -2.3100E-01, -2.3100E-01, Bi]
|
|
cartesian_forces: # hartree/bohr
|
|
- [ 5.83587926E-03, 5.83587926E-03, 5.83587926E-03, ]
|
|
- [ -5.83587926E-03, -5.83587926E-03, -5.83587926E-03, ]
|
|
force_length_stats: {min: 1.01080394E-02, max: 1.01080394E-02, mean: 1.01080394E-02, }
|
|
...
|
|
|
|
Integrated electronic density in atomic spheres:
|
|
------------------------------------------------
|
|
Atom Sphere_radius Integrated_density
|
|
1 2.00000 1.23380259
|
|
2 2.00000 1.23380259
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 50.747E-18; max= 87.999E-18
|
|
reduced coordinates (array xred) for 2 atoms
|
|
0.231000000000 0.231000000000 0.231000000000
|
|
-0.231000000000 -0.231000000000 -0.231000000000
|
|
rms dE/dt= 7.5785E-02; max dE/dt= 7.5785E-02; dE/dt below (all hartree)
|
|
1 -0.075785102971 -0.075785102971 -0.075785102971
|
|
2 0.075785102971 0.075785102971 0.075785102971
|
|
|
|
cartesian coordinates (angstrom) at end:
|
|
1 1.58741565060424 1.58741565060424 1.58741565060424
|
|
2 -1.58741565060424 -1.58741565060424 -1.58741565060424
|
|
|
|
cartesian forces (hartree/bohr) at end:
|
|
1 0.00583587926170 0.00583587926170 0.00583587926170
|
|
2 -0.00583587926170 -0.00583587926170 -0.00583587926170
|
|
frms,max,avg= 5.8358793E-03 5.8358793E-03 0.000E+00 0.000E+00 0.000E+00 h/b
|
|
|
|
cartesian forces (eV/Angstrom) at end:
|
|
1 0.30009295217747 0.30009295217747 0.30009295217747
|
|
2 -0.30009295217747 -0.30009295217747 -0.30009295217747
|
|
frms,max,avg= 3.0009295E-01 3.0009295E-01 0.000E+00 0.000E+00 0.000E+00 e/A
|
|
length scales= 9.000000000000 9.000000000000 9.000000000000 bohr
|
|
= 4.762594877310 4.762594877310 4.762594877310 angstroms
|
|
prteigrs : about to open file t84o_DS4_EIG
|
|
Fermi (or HOMO) energy (hartree) = 0.04304 Average Vxc (hartree)= -0.30593
|
|
Eigenvalues (hartree) for nkpt= 2 k points:
|
|
kpt# 1, nband= 5, wtk= 0.25000, kpt= 0.2500 0.2500 0.2500 (reduced coord)
|
|
-0.35078 -0.17103 0.00738 0.00738 0.04304
|
|
prteigrs : prtvol=0 or 1, do not print more k-points.
|
|
|
|
|
|
--- !EnergyTerms
|
|
iteration_state : {dtset: 4, }
|
|
comment : Components of total free energy in Hartree
|
|
kinetic : 2.78249231859084E+00
|
|
hartree : 3.97190950906315E-01
|
|
xc : -2.61261807790702E+00
|
|
Ewald energy : -1.13058438878818E+01
|
|
psp_core : 1.44126513566533E+00
|
|
local_psp : -1.95539061073285E+00
|
|
non_local_psp : 5.63285760109344E-01
|
|
total_energy : -1.06896184112498E+01
|
|
total_energy_eV : -2.90879309905442E+02
|
|
band_energy : -1.21889787906924E+00
|
|
...
|
|
|
|
|
|
Cartesian components of stress tensor (hartree/bohr^3)
|
|
sigma(1 1)= 6.93480452E-04 sigma(3 2)= 1.65469902E-04
|
|
sigma(2 2)= 6.93480452E-04 sigma(3 1)= 1.65469902E-04
|
|
sigma(3 3)= 6.93480452E-04 sigma(2 1)= 1.65469902E-04
|
|
|
|
-Cartesian components of stress tensor (GPa) [Pressure= -2.0403E+01 GPa]
|
|
- sigma(1 1)= 2.04028959E+01 sigma(3 2)= 4.86829178E+00
|
|
- sigma(2 2)= 2.04028959E+01 sigma(3 1)= 4.86829178E+00
|
|
- sigma(3 3)= 2.04028959E+01 sigma(2 1)= 4.86829178E+00
|
|
|
|
================================================================================
|
|
== DATASET 5 ==================================================================
|
|
- mpi_nproc: 1, omp_nthreads: -1 (-1 if OMP is not activated)
|
|
|
|
|
|
--- !DatasetInfo
|
|
iteration_state: {dtset: 5, }
|
|
dimensions: {natom: 2, nkpt: 8, mband: 5, nsppol: 1, nspinor: 1, nspden: 1, mpw: 65, }
|
|
cutoff_energies: {ecut: 2.0, pawecutdg: -1.0, }
|
|
electrons: {nelect: 1.00000000E+01, charge: 0.00000000E+00, occopt: 1.00000000E+00, tsmear: 1.00000000E-02, }
|
|
meta: {optdriver: 1, rfelfd: 2, }
|
|
...
|
|
|
|
mkfilename : getwfk/=0, take file _WFK from output of DATASET 4.
|
|
|
|
mkfilename : getden/=0, take file _DEN from output of DATASET 4.
|
|
|
|
Exchange-correlation functional for the present dataset will be:
|
|
LDA: new Teter (4/93) with spin-polarized option - ixc=1
|
|
Citation for XC functional:
|
|
S. Goedecker, M. Teter, J. Huetter, PRB 54, 1703 (1996)
|
|
|
|
Real(R)+Recip(G) space primitive vectors, cartesian coordinates (Bohr,Bohr^-1):
|
|
R(1)= 8.3937734 2.2961454 2.2961454 G(1)= 0.1350007 -0.0289975 -0.0289975
|
|
R(2)= 2.2961454 8.3937734 2.2961454 G(2)= -0.0289975 0.1350007 -0.0289975
|
|
R(3)= 2.2961454 2.2961454 8.3937734 G(3)= -0.0289975 -0.0289975 0.1350007
|
|
Unit cell volume ucvol= 4.8283574E+02 bohr^3
|
|
Angles (23,13,12)= 5.72500000E+01 5.72500000E+01 5.72500000E+01 degrees
|
|
setup1 : take into account q-point for computing boxcut.
|
|
|
|
getcut: wavevector= 0.0000 0.0000 0.0000 ngfft= 12 12 12
|
|
ecut(hartree)= 2.000 => boxcut(ratio)= 2.09807
|
|
--------------------------------------------------------------------------------
|
|
|
|
|
|
==> initialize data related to q vector <==
|
|
|
|
The list of irreducible perturbations for this q vector is:
|
|
1) idir= 1 ipert= 3
|
|
2) idir= 2 ipert= 3
|
|
3) idir= 3 ipert= 3
|
|
|
|
================================================================================
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : derivative vs k along direction 1
|
|
The set of symmetries contains only one element for this perturbation.
|
|
symkpt : not enough symmetry to change the number of k points.
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 5, }
|
|
solver: {iscf: -3, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-16, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 -6.1449887818737 -6.145E+00 6.491E-03 0.000E+00
|
|
ETOT 2 -6.1466092113292 -1.620E-03 8.006E-07 0.000E+00
|
|
ETOT 3 -6.1466096110267 -3.997E-07 2.828E-09 0.000E+00
|
|
ETOT 4 -6.1466096115191 -4.924E-10 1.037E-12 0.000E+00
|
|
ETOT 5 -6.1466096115200 -8.207E-13 8.175E-15 0.000E+00
|
|
ETOT 6 -6.1466096115200 -1.776E-15 7.604E-17 0.000E+00
|
|
|
|
At SCF step 6 max residual= 7.60E-17 < tolwfr= 1.00E-16 =>converged.
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 36.208E-18; max= 76.044E-18
|
|
dfpt_looppert : ek2= 1.5717853745E+01
|
|
f-sum rule ratio= 6.1240340665E-01
|
|
prteigrs : about to open file t84t_1WF1_EIG
|
|
Expectation of eigenvalue derivatives (hartree) for nkpt= 8 k points:
|
|
(in case of degenerate eigenvalues, averaged derivative)
|
|
kpt# 1, nband= 5, wtk= 0.12500, kpt= 0.2500 0.2500 0.2500 (reduced coord)
|
|
0.04455 -0.12738 0.01565 0.01565 0.04627
|
|
prteigrs : prtvol=0 or 1, do not print more k-points.
|
|
|
|
|
|
Eight components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 1.30650812E+01 eigvalue= 5.30945963E-01 local= -9.86528305E+00
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
kin1= -9.62566718E+00 Hartree= 0.00000000E+00 xc= 0.00000000E+00
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 2.41586549E+00 enl1= -2.66755201E+00
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -6.14660961E+00
|
|
No Ewald or frozen-wf contrib.: the relaxation energy is the total one
|
|
2DEtotal= -0.6146609612E+01 Ha. Also 2DEtotal= -0.167257753577E+03 eV
|
|
( non-var. 2DEtotal : -6.1466095923E+00 Ha)
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : derivative vs k along direction 2
|
|
The set of symmetries contains only one element for this perturbation.
|
|
symkpt : not enough symmetry to change the number of k points.
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 5, }
|
|
solver: {iscf: -3, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-16, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 -6.1449825509768 -6.145E+00 4.913E-03 0.000E+00
|
|
ETOT 2 -6.1466092083483 -1.627E-03 8.006E-07 0.000E+00
|
|
ETOT 3 -6.1466096114668 -4.031E-07 2.828E-09 0.000E+00
|
|
ETOT 4 -6.1466096119605 -4.937E-10 1.037E-12 0.000E+00
|
|
ETOT 5 -6.1466096119613 -8.189E-13 8.175E-15 0.000E+00
|
|
ETOT 6 -6.1466096119613 -4.441E-15 7.604E-17 0.000E+00
|
|
|
|
At SCF step 6 max residual= 7.60E-17 < tolwfr= 1.00E-16 =>converged.
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 35.043E-18; max= 76.044E-18
|
|
dfpt_looppert : ek2= 1.5717853745E+01
|
|
f-sum rule ratio= 6.1240340669E-01
|
|
prteigrs : about to open file t84t_1WF1_EIG
|
|
Expectation of eigenvalue derivatives (hartree) for nkpt= 8 k points:
|
|
(in case of degenerate eigenvalues, averaged derivative)
|
|
kpt# 1, nband= 5, wtk= 0.12500, kpt= 0.2500 0.2500 0.2500 (reduced coord)
|
|
0.04455 -0.12738 0.01565 0.01565 0.04627
|
|
prteigrs : prtvol=0 or 1, do not print more k-points.
|
|
|
|
|
|
Eight components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 1.30650812E+01 eigvalue= 5.30945963E-01 local= -9.86528305E+00
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
kin1= -9.62566718E+00 Hartree= 0.00000000E+00 xc= 0.00000000E+00
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 2.41586549E+00 enl1= -2.66755201E+00
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -6.14660961E+00
|
|
No Ewald or frozen-wf contrib.: the relaxation energy is the total one
|
|
2DEtotal= -0.6146609612E+01 Ha. Also 2DEtotal= -0.167257753589E+03 eV
|
|
( non-var. 2DEtotal : -6.1466095927E+00 Ha)
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : derivative vs k along direction 3
|
|
The set of symmetries contains only one element for this perturbation.
|
|
symkpt : not enough symmetry to change the number of k points.
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 5, }
|
|
solver: {iscf: -3, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-16, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 -6.1449887836229 -6.145E+00 6.491E-03 0.000E+00
|
|
ETOT 2 -6.1466092114116 -1.620E-03 8.006E-07 0.000E+00
|
|
ETOT 3 -6.1466096111080 -3.997E-07 2.828E-09 0.000E+00
|
|
ETOT 4 -6.1466096116004 -4.924E-10 1.037E-12 0.000E+00
|
|
ETOT 5 -6.1466096116013 -8.216E-13 8.175E-15 0.000E+00
|
|
ETOT 6 -6.1466096116013 -3.553E-15 7.604E-17 0.000E+00
|
|
|
|
At SCF step 6 max residual= 7.60E-17 < tolwfr= 1.00E-16 =>converged.
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 36.207E-18; max= 76.044E-18
|
|
dfpt_looppert : ek2= 1.5717853745E+01
|
|
f-sum rule ratio= 6.1240340666E-01
|
|
prteigrs : about to open file t84t_1WF1_EIG
|
|
Expectation of eigenvalue derivatives (hartree) for nkpt= 8 k points:
|
|
(in case of degenerate eigenvalues, averaged derivative)
|
|
kpt# 1, nband= 5, wtk= 0.12500, kpt= 0.2500 0.2500 0.2500 (reduced coord)
|
|
0.04455 -0.12738 0.01565 0.01565 0.04627
|
|
prteigrs : prtvol=0 or 1, do not print more k-points.
|
|
|
|
|
|
Eight components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 1.30650812E+01 eigvalue= 5.30945963E-01 local= -9.86528305E+00
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
kin1= -9.62566718E+00 Hartree= 0.00000000E+00 xc= 0.00000000E+00
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 2.41586549E+00 enl1= -2.66755201E+00
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -6.14660961E+00
|
|
No Ewald or frozen-wf contrib.: the relaxation energy is the total one
|
|
2DEtotal= -0.6146609612E+01 Ha. Also 2DEtotal= -0.167257753579E+03 eV
|
|
( non-var. 2DEtotal : -6.1466095924E+00 Ha)
|
|
================================================================================
|
|
|
|
---- first-order wavefunction calculations are completed ----
|
|
|
|
|
|
Total localisation tensor (bohr^2) in cartesian coordinates
|
|
WARNING : still subject to testing - especially symmetries.
|
|
direction matrix element
|
|
alpha beta real part imaginary part
|
|
1 1 2.8932726774 0.0000000000
|
|
1 2 1.5651866572 0.0000000000
|
|
1 3 1.5651866572 0.0000000000
|
|
2 1 1.5651866572 0.0000000000
|
|
2 2 2.8932726773 0.0000000000
|
|
2 3 1.5651866572 0.0000000000
|
|
3 1 1.5651866572 0.0000000000
|
|
3 2 1.5651866572 0.0000000000
|
|
3 3 2.8932726774 0.0000000000
|
|
|
|
respfn : d/dk was computed, but no 2DTE, so no DDB output.
|
|
|
|
================================================================================
|
|
== DATASET 6 ==================================================================
|
|
- mpi_nproc: 1, omp_nthreads: -1 (-1 if OMP is not activated)
|
|
|
|
|
|
--- !DatasetInfo
|
|
iteration_state: {dtset: 6, }
|
|
dimensions: {natom: 2, nkpt: 8, mband: 5, nsppol: 1, nspinor: 1, nspden: 1, mpw: 65, }
|
|
cutoff_energies: {ecut: 2.0, pawecutdg: -1.0, }
|
|
electrons: {nelect: 1.00000000E+01, charge: 0.00000000E+00, occopt: 1.00000000E+00, tsmear: 1.00000000E-02, }
|
|
meta: {optdriver: 1, rfelfd: 3, rfphon: 1, }
|
|
...
|
|
|
|
mkfilename : getwfk/=0, take file _WFK from output of DATASET 4.
|
|
|
|
mkfilename : getddk/=0, take file _1WF from output of DATASET 5.
|
|
|
|
Exchange-correlation functional for the present dataset will be:
|
|
LDA: new Teter (4/93) with spin-polarized option - ixc=1
|
|
Citation for XC functional:
|
|
S. Goedecker, M. Teter, J. Huetter, PRB 54, 1703 (1996)
|
|
|
|
Real(R)+Recip(G) space primitive vectors, cartesian coordinates (Bohr,Bohr^-1):
|
|
R(1)= 8.3937734 2.2961454 2.2961454 G(1)= 0.1350007 -0.0289975 -0.0289975
|
|
R(2)= 2.2961454 8.3937734 2.2961454 G(2)= -0.0289975 0.1350007 -0.0289975
|
|
R(3)= 2.2961454 2.2961454 8.3937734 G(3)= -0.0289975 -0.0289975 0.1350007
|
|
Unit cell volume ucvol= 4.8283574E+02 bohr^3
|
|
Angles (23,13,12)= 5.72500000E+01 5.72500000E+01 5.72500000E+01 degrees
|
|
setup1 : take into account q-point for computing boxcut.
|
|
|
|
getcut: wavevector= 0.0000 0.0000 0.0000 ngfft= 12 12 12
|
|
ecut(hartree)= 2.000 => boxcut(ratio)= 2.09807
|
|
--------------------------------------------------------------------------------
|
|
|
|
|
|
==> initialize data related to q vector <==
|
|
|
|
The list of irreducible perturbations for this q vector is:
|
|
1) idir= 1 ipert= 1
|
|
2) idir= 1 ipert= 4
|
|
|
|
================================================================================
|
|
|
|
The perturbation idir= 2 ipert= 1 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 3 ipert= 1 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 1 ipert= 2 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 2 ipert= 2 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 3 ipert= 2 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 2 ipert= 4 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
The perturbation idir= 3 ipert= 4 is
|
|
symmetric of a previously calculated perturbation.
|
|
So, its SCF calculation is not needed.
|
|
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : displacement of atom 1 along direction 1
|
|
Found 2 symmetries that leave the perturbation invariant.
|
|
symkpt : the number of k-points, thanks to the symmetries,
|
|
is reduced to 6 .
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 6, }
|
|
solver: {iscf: 7, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-12, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 24.684944793627 -4.166E+01 6.108E-02 2.047E+03
|
|
ETOT 2 2.5619222974018 -2.212E+01 5.318E-03 2.141E+01
|
|
ETOT 3 2.3621853606445 -1.997E-01 5.914E-05 8.568E-01
|
|
ETOT 4 2.3549930183814 -7.192E-03 1.317E-06 4.241E-02
|
|
ETOT 5 2.3546653974473 -3.276E-04 1.144E-07 1.282E-03
|
|
ETOT 6 2.3546584501994 -6.947E-06 2.001E-09 7.221E-05
|
|
ETOT 7 2.3546580481011 -4.021E-07 2.850E-10 9.823E-07
|
|
ETOT 8 2.3546580423595 -5.742E-09 3.029E-12 1.834E-08
|
|
ETOT 9 2.3546580422549 -1.046E-10 4.545E-13 2.389E-10
|
|
|
|
At SCF step 9 max residual= 4.55E-13 < tolwfr= 1.00E-12 =>converged.
|
|
-open ddk wf file :t84o_DS5_1WF7
|
|
-open ddk wf file :t84o_DS5_1WF8
|
|
-open ddk wf file :t84o_DS5_1WF9
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 23.953E-14; max= 45.454E-14
|
|
|
|
Thirteen components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 6.88902572E+01 eigvalue= 4.57352005E+00 local= -3.75789425E+01
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
loc psp = -9.97378210E+01 Hartree= 2.05605361E+01 xc= -7.73947458E+00
|
|
note that "loc psp" includes a xc core correction that could be resolved
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 1.52882980E+01 enl1= -2.82505705E+01
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -6.39941973E+01
|
|
10,11,12 Non-relaxation contributions : frozen-wavefunctions and Ewald
|
|
fr.local= 3.54427003E+01 fr.nonlo= 1.41019542E+01 Ewald= 1.68042009E+01
|
|
13,14 Frozen wf xc core corrections (1) and (2)
|
|
frxc 1 = 0.00000000E+00 frxc 2 = 0.00000000E+00
|
|
Resulting in :
|
|
2DEtotal= 0.2354658042E+01 Ha. Also 2DEtotal= 0.640735038468E+02 eV
|
|
(2DErelax= -6.3994197347E+01 Ha. 2DEnonrelax= 6.6348855390E+01 Ha)
|
|
( non-var. 2DEtotal : 2.3546596013E+00 Ha)
|
|
|
|
|
|
--------------------------------------------------------------------------------
|
|
Perturbation wavevector (in red.coord.) 0.000000 0.000000 0.000000
|
|
Perturbation : homogeneous electric field along direction 1
|
|
The set of symmetries contains only one element for this perturbation.
|
|
symkpt : not enough symmetry to change the number of k points.
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
--------------------------------------------------------------------------------
|
|
|
|
Initialisation of the first-order wave-functions :
|
|
ireadwf= 0
|
|
- dfpt_looppert: read the DDK wavefunctions from file: t84o_DS5_1WF7
|
|
|
|
--- !BeginCycle
|
|
iteration_state: {dtset: 6, }
|
|
solver: {iscf: 7, nstep: 20, nline: 4, wfoptalg: 0, }
|
|
tolerances: {tolwfr: 1.00E-12, }
|
|
...
|
|
|
|
iter 2DEtotal(Ha) deltaE(Ha) residm vres2
|
|
-ETOT 1 -136.33899755416 -1.363E+02 9.973E-02 1.116E+03
|
|
ETOT 2 -149.47609050027 -1.314E+01 2.828E-03 2.730E+01
|
|
ETOT 3 -149.75338810650 -2.773E-01 7.589E-05 5.683E-01
|
|
ETOT 4 -149.75736508734 -3.977E-03 1.237E-06 3.163E-02
|
|
ETOT 5 -149.75760895510 -2.439E-04 6.558E-08 2.345E-04
|
|
ETOT 6 -149.75761088439 -1.929E-06 1.222E-09 3.707E-06
|
|
ETOT 7 -149.75761090906 -2.466E-08 1.834E-11 8.437E-08
|
|
ETOT 8 -149.75761090955 -4.923E-10 8.681E-13 8.039E-10
|
|
|
|
At SCF step 8 max residual= 8.68E-13 < tolwfr= 1.00E-12 =>converged.
|
|
-open ddk wf file :t84o_DS5_1WF7
|
|
-open ddk wf file :t84o_DS5_1WF8
|
|
-open ddk wf file :t84o_DS5_1WF9
|
|
================================================================================
|
|
|
|
----iterations are completed or convergence reached----
|
|
|
|
Mean square residual over all n,k,spin= 53.630E-14; max= 86.811E-14
|
|
|
|
Seven components of 2nd-order total energy (hartree) are
|
|
1,2,3: 0th-order hamiltonian combined with 1st-order wavefunctions
|
|
kin0= 4.59006746E+02 eigvalue= -6.28205832E-01 local= -4.05800970E+02
|
|
4,5,6: 1st-order hamiltonian combined with 1st and 0th-order wfs
|
|
dotwf= -2.99515246E+02 Hartree= 2.81972948E+01 xc= -1.36246581E+01
|
|
7,8,9: eventually, occupation + non-local contributions
|
|
edocc= 0.00000000E+00 enl0= 8.26074278E+01 enl1= 0.00000000E+00
|
|
1-9 gives the relaxation energy (to be shifted if some occ is /=2.0)
|
|
erelax= -1.49757611E+02
|
|
No Ewald or frozen-wf contrib.: the relaxation energy is the total one
|
|
2DEtotal= -0.1497576109E+03 Ha. Also 2DEtotal= -0.407511183642E+04 eV
|
|
( non-var. 2DEtotal : -1.4975762278E+02 Ha)
|
|
================================================================================
|
|
|
|
---- first-order wavefunction calculations are completed ----
|
|
|
|
|
|
==> Compute Derivative Database <==
|
|
|
|
2nd-order matrix (non-cartesian coordinates, masses not included,
|
|
asr not included )
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 1 1 1 2.3546596013 0.0000000000
|
|
1 1 2 1 0.5848585072 0.0000000000
|
|
1 1 3 1 0.5848585072 0.0000000000
|
|
1 1 1 2 -2.3546882108 -0.0000000000
|
|
1 1 2 2 -0.5849014239 -0.0000000000
|
|
1 1 3 2 -0.5849014239 -0.0000000000
|
|
1 1 1 4 -19.0491153246 0.0000000000
|
|
1 1 2 4 0.2706945603 0.0000000000
|
|
1 1 3 4 0.2706945603 0.0000000000
|
|
|
|
2 1 1 1 0.5848585072 0.0000000000
|
|
2 1 2 1 2.3546596013 0.0000000000
|
|
2 1 3 1 0.5848585072 0.0000000000
|
|
2 1 1 2 -0.5849014239 -0.0000000000
|
|
2 1 2 2 -2.3546882108 -0.0000000000
|
|
2 1 3 2 -0.5849014239 0.0000000000
|
|
2 1 1 4 0.2706945603 0.0000000000
|
|
2 1 2 4 -19.0491153246 0.0000000000
|
|
2 1 3 4 0.2706945603 0.0000000000
|
|
|
|
3 1 1 1 0.5848585072 0.0000000000
|
|
3 1 2 1 0.5848585072 0.0000000000
|
|
3 1 3 1 2.3546596013 0.0000000000
|
|
3 1 1 2 -0.5849014239 -0.0000000000
|
|
3 1 2 2 -0.5849014239 0.0000000000
|
|
3 1 3 2 -2.3546882108 0.0000000000
|
|
3 1 1 4 0.2706945603 0.0000000000
|
|
3 1 2 4 0.2706945603 0.0000000000
|
|
3 1 3 4 -19.0491153246 0.0000000000
|
|
|
|
1 2 1 1 -2.3546882108 0.0000000000
|
|
1 2 2 1 -0.5849014239 0.0000000000
|
|
1 2 3 1 -0.5849014239 0.0000000000
|
|
1 2 1 2 2.3546596013 0.0000000000
|
|
1 2 2 2 0.5848585072 0.0000000000
|
|
1 2 3 2 0.5848585072 0.0000000000
|
|
1 2 1 4 -19.0491153246 0.0000000000
|
|
1 2 2 4 0.2706945603 0.0000000000
|
|
1 2 3 4 0.2706945603 0.0000000000
|
|
|
|
2 2 1 1 -0.5849014239 0.0000000000
|
|
2 2 2 1 -2.3546882108 0.0000000000
|
|
2 2 3 1 -0.5849014239 -0.0000000000
|
|
2 2 1 2 0.5848585072 0.0000000000
|
|
2 2 2 2 2.3546596013 0.0000000000
|
|
2 2 3 2 0.5848585072 0.0000000000
|
|
2 2 1 4 0.2706945603 0.0000000000
|
|
2 2 2 4 -19.0491153246 0.0000000000
|
|
2 2 3 4 0.2706945603 0.0000000000
|
|
|
|
3 2 1 1 -0.5849014239 0.0000000000
|
|
3 2 2 1 -0.5849014239 -0.0000000000
|
|
3 2 3 1 -2.3546882108 -0.0000000000
|
|
3 2 1 2 0.5848585072 0.0000000000
|
|
3 2 2 2 0.5848585072 0.0000000000
|
|
3 2 3 2 2.3546596013 0.0000000000
|
|
3 2 1 4 0.2706945603 0.0000000000
|
|
3 2 2 4 0.2706945603 0.0000000000
|
|
3 2 3 4 -19.0491153246 0.0000000000
|
|
|
|
1 4 1 1 -19.0491046138 0.0000000000
|
|
1 4 2 1 0.2706945603 0.0000000000
|
|
1 4 3 1 0.2706945603 0.0000000000
|
|
1 4 1 2 -19.0491046138 0.0000000000
|
|
1 4 2 2 0.2706945603 0.0000000000
|
|
1 4 3 2 0.2706945603 0.0000000000
|
|
1 4 1 4 -149.7576227793 0.0000000000
|
|
1 4 2 4 54.1603041767 0.0000000000
|
|
1 4 3 4 54.1603041767 0.0000000000
|
|
|
|
2 4 1 1 0.2706945603 0.0000000000
|
|
2 4 2 1 -19.0491046138 0.0000000000
|
|
2 4 3 1 0.2706945603 0.0000000000
|
|
2 4 1 2 0.2706945603 0.0000000000
|
|
2 4 2 2 -19.0491046138 0.0000000000
|
|
2 4 3 2 0.2706945603 0.0000000000
|
|
2 4 1 4 54.1603041767 0.0000000000
|
|
2 4 2 4 -149.7576227793 0.0000000000
|
|
2 4 3 4 54.1603041767 0.0000000000
|
|
|
|
3 4 1 1 0.2706945603 0.0000000000
|
|
3 4 2 1 0.2706945603 0.0000000000
|
|
3 4 3 1 -19.0491046138 0.0000000000
|
|
3 4 1 2 0.2706945603 0.0000000000
|
|
3 4 2 2 0.2706945603 0.0000000000
|
|
3 4 3 2 -19.0491046138 0.0000000000
|
|
3 4 1 4 54.1603041767 0.0000000000
|
|
3 4 2 4 54.1603041767 0.0000000000
|
|
3 4 3 4 -149.7576227793 0.0000000000
|
|
|
|
|
|
Dynamical matrix, in cartesian coordinates,
|
|
if specified in the inputs, asr has been imposed
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 1 1 1 0.0386993761 0.0000000000
|
|
1 1 2 1 -0.0089001469 0.0000000000
|
|
1 1 3 1 -0.0089001469 0.0000000000
|
|
1 1 1 2 -0.0386993458 -0.0000000000
|
|
1 1 2 2 0.0088997924 0.0000000000
|
|
1 1 3 2 0.0088997924 -0.0000000000
|
|
|
|
2 1 1 1 -0.0089001469 0.0000000000
|
|
2 1 2 1 0.0386993761 0.0000000000
|
|
2 1 3 1 -0.0089001469 0.0000000000
|
|
2 1 1 2 0.0088997924 0.0000000000
|
|
2 1 2 2 -0.0386993458 -0.0000000000
|
|
2 1 3 2 0.0088997924 0.0000000000
|
|
|
|
3 1 1 1 -0.0089001469 0.0000000000
|
|
3 1 2 1 -0.0089001469 0.0000000000
|
|
3 1 3 1 0.0386993761 0.0000000000
|
|
3 1 1 2 0.0088997924 -0.0000000000
|
|
3 1 2 2 0.0088997924 0.0000000000
|
|
3 1 3 2 -0.0386993458 0.0000000000
|
|
|
|
1 2 1 1 -0.0386993458 0.0000000000
|
|
1 2 2 1 0.0088997924 -0.0000000000
|
|
1 2 3 1 0.0088997924 0.0000000000
|
|
1 2 1 2 0.0386993761 0.0000000000
|
|
1 2 2 2 -0.0089001469 0.0000000000
|
|
1 2 3 2 -0.0089001469 0.0000000000
|
|
|
|
2 2 1 1 0.0088997924 -0.0000000000
|
|
2 2 2 1 -0.0386993458 0.0000000000
|
|
2 2 3 1 0.0088997924 -0.0000000000
|
|
2 2 1 2 -0.0089001469 0.0000000000
|
|
2 2 2 2 0.0386993761 0.0000000000
|
|
2 2 3 2 -0.0089001469 0.0000000000
|
|
|
|
3 2 1 1 0.0088997924 0.0000000000
|
|
3 2 2 1 0.0088997924 -0.0000000000
|
|
3 2 3 1 -0.0386993458 -0.0000000000
|
|
3 2 1 2 -0.0089001469 0.0000000000
|
|
3 2 2 2 -0.0089001469 0.0000000000
|
|
3 2 3 2 0.0386993761 0.0000000000
|
|
|
|
Dielectric tensor, in cartesian coordinates,
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 4 1 4 5.8678255127 -0.0000000000
|
|
1 4 2 4 -0.1305397300 -0.0000000000
|
|
1 4 3 4 -0.1305397300 -0.0000000000
|
|
|
|
2 4 1 4 -0.1305397300 -0.0000000000
|
|
2 4 2 4 5.8678255127 -0.0000000000
|
|
2 4 3 4 -0.1305397300 -0.0000000000
|
|
|
|
3 4 1 4 -0.1305397300 -0.0000000000
|
|
3 4 2 4 -0.1305397300 -0.0000000000
|
|
3 4 3 4 5.8678255127 -0.0000000000
|
|
|
|
Effective charges, in cartesian coordinates,
|
|
(from electric field response)
|
|
if specified in the inputs, charge neutrality has been imposed
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 1 1 4 1.9682391346 0.0000000000
|
|
2 1 1 4 0.0430823773 0.0000000000
|
|
3 1 1 4 0.0430823773 0.0000000000
|
|
1 2 1 4 1.9682391346 0.0000000000
|
|
2 2 1 4 0.0430823773 0.0000000000
|
|
3 2 1 4 0.0430823773 0.0000000000
|
|
|
|
1 1 2 4 0.0430823773 0.0000000000
|
|
2 1 2 4 1.9682391346 0.0000000000
|
|
3 1 2 4 0.0430823773 0.0000000000
|
|
1 2 2 4 0.0430823773 0.0000000000
|
|
2 2 2 4 1.9682391346 0.0000000000
|
|
3 2 2 4 0.0430823773 0.0000000000
|
|
|
|
1 1 3 4 0.0430823773 0.0000000000
|
|
2 1 3 4 0.0430823773 0.0000000000
|
|
3 1 3 4 1.9682391346 0.0000000000
|
|
1 2 3 4 0.0430823773 0.0000000000
|
|
2 2 3 4 0.0430823773 0.0000000000
|
|
3 2 3 4 1.9682391346 0.0000000000
|
|
|
|
Effective charges, in cartesian coordinates,
|
|
(from phonon response)
|
|
if specified in the inputs, charge neutrality has been imposed
|
|
j1 j2 matrix element
|
|
dir pert dir pert real part imaginary part
|
|
|
|
1 4 1 1 1.9682408392 0.0000000000
|
|
2 4 1 1 0.0430823773 0.0000000000
|
|
3 4 1 1 0.0430823773 0.0000000000
|
|
|
|
1 4 2 1 0.0430823773 0.0000000000
|
|
2 4 2 1 1.9682408392 0.0000000000
|
|
3 4 2 1 0.0430823773 0.0000000000
|
|
|
|
1 4 3 1 0.0430823773 0.0000000000
|
|
2 4 3 1 0.0430823773 0.0000000000
|
|
3 4 3 1 1.9682408392 0.0000000000
|
|
|
|
1 4 1 2 1.9682408392 0.0000000000
|
|
2 4 1 2 0.0430823773 0.0000000000
|
|
3 4 1 2 0.0430823773 0.0000000000
|
|
|
|
1 4 2 2 0.0430823773 0.0000000000
|
|
2 4 2 2 1.9682408392 0.0000000000
|
|
3 4 2 2 0.0430823773 0.0000000000
|
|
|
|
1 4 3 2 0.0430823773 0.0000000000
|
|
2 4 3 2 0.0430823773 0.0000000000
|
|
3 4 3 2 1.9682408392 0.0000000000
|
|
|
|
|
|
|
|
|
|
Phonon wavevector (reduced coordinates) : 0.00000 0.00000 0.00000
|
|
Phonon energies in Hartree :
|
|
-1.334698E-06 1.005041E-06 1.005043E-06 3.312450E-04 4.998994E-04
|
|
4.998994E-04
|
|
Phonon frequencies in cm-1 :
|
|
- -2.929324E-01 2.205810E-01 2.205815E-01 7.269987E+01 1.097152E+02
|
|
- 1.097152E+02
|
|
|
|
Phonon at Gamma, with non-analyticity in the
|
|
direction (cartesian coordinates) 1.00000 0.00000 0.00000
|
|
Phonon energies in Hartree :
|
|
-8.767259E-07 1.005041E-06 3.004932E-04 3.312450E-04 4.998994E-04
|
|
4.998994E-04
|
|
Phonon frequencies in cm-1 :
|
|
- -1.924191E-01 2.205810E-01 6.595064E+01 7.269987E+01 1.097152E+02
|
|
- 1.097152E+02
|
|
|
|
Phonon at Gamma, with non-analyticity in the
|
|
direction (cartesian coordinates) 0.00000 1.00000 0.00000
|
|
Phonon energies in Hartree :
|
|
-8.767243E-07 1.005042E-06 3.004932E-04 3.312450E-04 4.998994E-04
|
|
4.998994E-04
|
|
Phonon frequencies in cm-1 :
|
|
- -1.924187E-01 2.205813E-01 6.595064E+01 7.269987E+01 1.097152E+02
|
|
- 1.097152E+02
|
|
|
|
Phonon at Gamma, with non-analyticity in the
|
|
direction (cartesian coordinates) 0.00000 0.00000 1.00000
|
|
Phonon energies in Hartree :
|
|
-8.767238E-07 1.005043E-06 3.004932E-04 3.312450E-04 4.998994E-04
|
|
4.998994E-04
|
|
Phonon frequencies in cm-1 :
|
|
- -1.924186E-01 2.205814E-01 6.595064E+01 7.269987E+01 1.097152E+02
|
|
- 1.097152E+02
|
|
|
|
== END DATASET(S) ==============================================================
|
|
================================================================================
|
|
|
|
-outvars: echo values of variables after computation --------
|
|
acell 9.0000000000E+00 9.0000000000E+00 9.0000000000E+00 Bohr
|
|
amu 2.08980370E+02
|
|
asr 0
|
|
chneut 0
|
|
ecut 2.00000000E+00 Hartree
|
|
etotal1 -1.0689618411E+01
|
|
etotal2 -6.1466096115E+00
|
|
etotal3 -1.4975761091E+02
|
|
etotal4 -1.0689618411E+01
|
|
etotal5 -6.1466096116E+00
|
|
etotal6 -1.4975761091E+02
|
|
fcart1 -7.6265067322E-19 -9.9514647219E-19 1.0108039387E-02
|
|
7.6265067322E-19 9.9514647219E-19 -1.0108039387E-02
|
|
fcart3 0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
fcart4 5.8358792617E-03 5.8358792617E-03 5.8358792617E-03
|
|
-5.8358792617E-03 -5.8358792617E-03 -5.8358792617E-03
|
|
fcart6 0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
- fftalg 512
|
|
getddk1 0
|
|
getddk2 0
|
|
getddk3 2
|
|
getddk4 0
|
|
getddk5 0
|
|
getddk6 5
|
|
getden1 0
|
|
getden2 1
|
|
getden3 0
|
|
getden4 0
|
|
getden5 4
|
|
getden6 0
|
|
getwfk1 0
|
|
getwfk2 1
|
|
getwfk3 1
|
|
getwfk4 0
|
|
getwfk5 4
|
|
getwfk6 4
|
|
iscf1 7
|
|
iscf2 -3
|
|
iscf3 7
|
|
iscf4 7
|
|
iscf5 -3
|
|
iscf6 7
|
|
jdtset 1 2 3 4 5 6
|
|
kpt1 2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
kpt2 2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
2.50000000E-01 -2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 -2.50000000E-01 2.50000000E-01
|
|
2.50000000E-01 2.50000000E-01 -2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 -2.50000000E-01
|
|
2.50000000E-01 -2.50000000E-01 -2.50000000E-01
|
|
-2.50000000E-01 -2.50000000E-01 -2.50000000E-01
|
|
kpt3 2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
2.50000000E-01 -2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 -2.50000000E-01 2.50000000E-01
|
|
2.50000000E-01 2.50000000E-01 -2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 -2.50000000E-01
|
|
2.50000000E-01 -2.50000000E-01 -2.50000000E-01
|
|
-2.50000000E-01 -2.50000000E-01 -2.50000000E-01
|
|
kpt4 2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
kpt5 2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
2.50000000E-01 -2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 -2.50000000E-01 2.50000000E-01
|
|
2.50000000E-01 2.50000000E-01 -2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 -2.50000000E-01
|
|
2.50000000E-01 -2.50000000E-01 -2.50000000E-01
|
|
-2.50000000E-01 -2.50000000E-01 -2.50000000E-01
|
|
kpt6 2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 2.50000000E-01
|
|
2.50000000E-01 -2.50000000E-01 2.50000000E-01
|
|
-2.50000000E-01 -2.50000000E-01 2.50000000E-01
|
|
2.50000000E-01 2.50000000E-01 -2.50000000E-01
|
|
-2.50000000E-01 2.50000000E-01 -2.50000000E-01
|
|
2.50000000E-01 -2.50000000E-01 -2.50000000E-01
|
|
-2.50000000E-01 -2.50000000E-01 -2.50000000E-01
|
|
kptopt1 1
|
|
kptopt2 3
|
|
kptopt3 3
|
|
kptopt4 1
|
|
kptopt5 3
|
|
kptopt6 3
|
|
kptrlatt 2 0 0 0 2 0 0 0 2
|
|
kptrlen 1.72466966E+01
|
|
P mkmem1 2
|
|
P mkmem2 8
|
|
P mkmem3 8
|
|
P mkmem4 2
|
|
P mkmem5 8
|
|
P mkmem6 8
|
|
P mkqmem1 2
|
|
P mkqmem2 8
|
|
P mkqmem3 8
|
|
P mkqmem4 2
|
|
P mkqmem5 8
|
|
P mkqmem6 8
|
|
P mk1mem1 2
|
|
P mk1mem2 8
|
|
P mk1mem3 8
|
|
P mk1mem4 2
|
|
P mk1mem5 8
|
|
P mk1mem6 8
|
|
natom 2
|
|
nband1 5
|
|
nband2 5
|
|
nband3 5
|
|
nband4 5
|
|
nband5 5
|
|
nband6 5
|
|
ndtset 6
|
|
ngfft 12 12 12
|
|
nkpt1 2
|
|
nkpt2 8
|
|
nkpt3 8
|
|
nkpt4 2
|
|
nkpt5 8
|
|
nkpt6 8
|
|
nqpt1 0
|
|
nqpt2 1
|
|
nqpt3 1
|
|
nqpt4 0
|
|
nqpt5 1
|
|
nqpt6 1
|
|
nstep 20
|
|
nsym 12
|
|
ntypat 1
|
|
occ1 2.000000 2.000000 2.000000 2.000000 2.000000
|
|
occ2 2.000000 2.000000 2.000000 2.000000 2.000000
|
|
occ3 2.000000 2.000000 2.000000 2.000000 2.000000
|
|
occ4 2.000000 2.000000 2.000000 2.000000 2.000000
|
|
occ5 2.000000 2.000000 2.000000 2.000000 2.000000
|
|
occ6 2.000000 2.000000 2.000000 2.000000 2.000000
|
|
optdriver1 0
|
|
optdriver2 1
|
|
optdriver3 1
|
|
optdriver4 0
|
|
optdriver5 1
|
|
optdriver6 1
|
|
prtpot1 0
|
|
prtpot2 1
|
|
prtpot3 1
|
|
prtpot4 0
|
|
prtpot5 1
|
|
prtpot6 1
|
|
rfelfd1 0
|
|
rfelfd2 2
|
|
rfelfd3 3
|
|
rfelfd4 0
|
|
rfelfd5 2
|
|
rfelfd6 3
|
|
rfphon1 0
|
|
rfphon2 0
|
|
rfphon3 1
|
|
rfphon4 0
|
|
rfphon5 0
|
|
rfphon6 1
|
|
rprim1 5.5318805038E-01 0.0000000000E+00 8.3305640920E-01
|
|
-2.7659402519E-01 4.7907490470E-01 8.3305640920E-01
|
|
-2.7659402519E-01 -4.7907490470E-01 8.3305640920E-01
|
|
rprim2 5.5318805038E-01 0.0000000000E+00 8.3305640920E-01
|
|
-2.7659402519E-01 4.7907490470E-01 8.3305640920E-01
|
|
-2.7659402519E-01 -4.7907490470E-01 8.3305640920E-01
|
|
rprim3 5.5318805038E-01 0.0000000000E+00 8.3305640920E-01
|
|
-2.7659402519E-01 4.7907490470E-01 8.3305640920E-01
|
|
-2.7659402519E-01 -4.7907490470E-01 8.3305640920E-01
|
|
rprim4 9.3264149385E-01 2.5512726623E-01 2.5512726623E-01
|
|
2.5512726623E-01 9.3264149385E-01 2.5512726623E-01
|
|
2.5512726623E-01 2.5512726623E-01 9.3264149385E-01
|
|
rprim5 9.3264149385E-01 2.5512726623E-01 2.5512726623E-01
|
|
2.5512726623E-01 9.3264149385E-01 2.5512726623E-01
|
|
2.5512726623E-01 2.5512726623E-01 9.3264149385E-01
|
|
rprim6 9.3264149385E-01 2.5512726623E-01 2.5512726623E-01
|
|
2.5512726623E-01 9.3264149385E-01 2.5512726623E-01
|
|
2.5512726623E-01 2.5512726623E-01 9.3264149385E-01
|
|
shiftk 5.00000000E-01 5.00000000E-01 5.00000000E-01
|
|
spgroup 166
|
|
strten1 5.2801054961E-04 5.2801054961E-04 1.0244202567E-03
|
|
0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
strten3 0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
strten4 6.9348045195E-04 6.9348045195E-04 6.9348045195E-04
|
|
1.6546990236E-04 1.6546990236E-04 1.6546990236E-04
|
|
strten6 0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
0.0000000000E+00 0.0000000000E+00 0.0000000000E+00
|
|
symrel 1 0 0 0 1 0 0 0 1 -1 0 0 0 -1 0 0 0 -1
|
|
0 1 0 1 0 0 0 0 1 0 -1 0 -1 0 0 0 0 -1
|
|
0 0 1 1 0 0 0 1 0 0 0 -1 -1 0 0 0 -1 0
|
|
1 0 0 0 0 1 0 1 0 -1 0 0 0 0 -1 0 -1 0
|
|
0 1 0 0 0 1 1 0 0 0 -1 0 0 0 -1 -1 0 0
|
|
0 0 1 0 1 0 1 0 0 0 0 -1 0 -1 0 -1 0 0
|
|
tolwfr1 1.00000000E-16
|
|
tolwfr2 1.00000000E-16
|
|
tolwfr3 1.00000000E-12
|
|
tolwfr4 1.00000000E-16
|
|
tolwfr5 1.00000000E-16
|
|
tolwfr6 1.00000000E-12
|
|
typat 1 1
|
|
wtk1 0.25000 0.75000
|
|
wtk2 0.12500 0.12500 0.12500 0.12500 0.12500 0.12500
|
|
0.12500 0.12500
|
|
wtk3 0.12500 0.12500 0.12500 0.12500 0.12500 0.12500
|
|
0.12500 0.12500
|
|
wtk4 0.25000 0.75000
|
|
wtk5 0.12500 0.12500 0.12500 0.12500 0.12500 0.12500
|
|
0.12500 0.12500
|
|
wtk6 0.12500 0.12500 0.12500 0.12500 0.12500 0.12500
|
|
0.12500 0.12500
|
|
xangst1 -1.3096941300E-18 -2.5642383897E-17 2.7494845596E+00
|
|
1.3096941300E-18 2.5642383897E-17 -2.7494845596E+00
|
|
xangst2 -1.3096941300E-18 -2.5642383897E-17 2.7494845596E+00
|
|
1.3096941300E-18 2.5642383897E-17 -2.7494845596E+00
|
|
xangst3 -1.3096941300E-18 -2.5642383897E-17 2.7494845596E+00
|
|
1.3096941300E-18 2.5642383897E-17 -2.7494845596E+00
|
|
xangst4 1.5874156506E+00 1.5874156506E+00 1.5874156506E+00
|
|
-1.5874156506E+00 -1.5874156506E+00 -1.5874156506E+00
|
|
xangst5 1.5874156506E+00 1.5874156506E+00 1.5874156506E+00
|
|
-1.5874156506E+00 -1.5874156506E+00 -1.5874156506E+00
|
|
xangst6 1.5874156506E+00 1.5874156506E+00 1.5874156506E+00
|
|
-1.5874156506E+00 -1.5874156506E+00 -1.5874156506E+00
|
|
xcart1 -2.4749632235E-18 -4.8457082961E-17 5.1957728242E+00
|
|
2.4749632235E-18 4.8457082961E-17 -5.1957728242E+00
|
|
xcart2 -2.4749632235E-18 -4.8457082961E-17 5.1957728242E+00
|
|
2.4749632235E-18 4.8457082961E-17 -5.1957728242E+00
|
|
xcart3 -2.4749632235E-18 -4.8457082961E-17 5.1957728242E+00
|
|
2.4749632235E-18 4.8457082961E-17 -5.1957728242E+00
|
|
xcart4 2.9997808387E+00 2.9997808387E+00 2.9997808387E+00
|
|
-2.9997808387E+00 -2.9997808387E+00 -2.9997808387E+00
|
|
xcart5 2.9997808387E+00 2.9997808387E+00 2.9997808387E+00
|
|
-2.9997808387E+00 -2.9997808387E+00 -2.9997808387E+00
|
|
xcart6 2.9997808387E+00 2.9997808387E+00 2.9997808387E+00
|
|
-2.9997808387E+00 -2.9997808387E+00 -2.9997808387E+00
|
|
xred 2.3100000000E-01 2.3100000000E-01 2.3100000000E-01
|
|
-2.3100000000E-01 -2.3100000000E-01 -2.3100000000E-01
|
|
znucl 83.00000
|
|
|
|
================================================================================
|
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|
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- Timing analysis has been suppressed with timopt=0
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|
|
|
|
|
================================================================================
|
|
|
|
Suggested references for the acknowledgment of ABINIT usage.
|
|
|
|
The users of ABINIT have little formal obligations with respect to the ABINIT group
|
|
(those specified in the GNU General Public License, http://www.gnu.org/copyleft/gpl.txt).
|
|
However, it is common practice in the scientific literature,
|
|
to acknowledge the efforts of people that have made the research possible.
|
|
In this spirit, please find below suggested citations of work written by ABINIT developers,
|
|
corresponding to implementations inside of ABINIT that you have used in the present run.
|
|
Note also that it will be of great value to readers of publications presenting these results,
|
|
to read papers enabling them to understand the theoretical formalism and details
|
|
of the ABINIT implementation.
|
|
For information on why they are suggested, see also https://docs.abinit.org/theory/acknowledgments.
|
|
-
|
|
- [1] The Abinit project: Impact, environment and recent developments.
|
|
- Computer Phys. Comm. 248, 107042 (2020).
|
|
- X.Gonze, B. Amadon, G. Antonius, F.Arnardi, L.Baguet, J.-M.Beuken,
|
|
- J.Bieder, F.Bottin, J.Bouchet, E.Bousquet, N.Brouwer, F.Bruneval,
|
|
- G.Brunin, T.Cavignac, J.-B. Charraud, Wei Chen, M.Cote, S.Cottenier,
|
|
- J.Denier, G.Geneste, Ph.Ghosez, M.Giantomassi, Y.Gillet, O.Gingras,
|
|
- D.R.Hamann, G.Hautier, Xu He, N.Helbig, N.Holzwarth, Y.Jia, F.Jollet,
|
|
- W.Lafargue-Dit-Hauret, K.Lejaeghere, M.A.L.Marques, A.Martin, C.Martins,
|
|
- H.P.C. Miranda, F.Naccarato, K. Persson, G.Petretto, V.Planes, Y.Pouillon,
|
|
- S.Prokhorenko, F.Ricci, G.-M.Rignanese, A.H.Romero, M.M.Schmitt, M.Torrent,
|
|
- M.J.van Setten, B.Van Troeye, M.J.Verstraete, G.Zerah and J.W.Zwanzig
|
|
- Comment: the fifth generic paper describing the ABINIT project.
|
|
- Note that a version of this paper, that is not formatted for Computer Phys. Comm.
|
|
- is available at https://www.abinit.org/sites/default/files/ABINIT20.pdf .
|
|
- The licence allows the authors to put it on the Web.
|
|
- DOI and bibtex: see https://docs.abinit.org/theory/bibliography/#gonze2020
|
|
-
|
|
- [2] First-principles responses of solids to atomic displacements and homogeneous electric fields:,
|
|
- implementation of a conjugate-gradient algorithm. X. Gonze, Phys. Rev. B55, 10337 (1997).
|
|
- Comment: Non-vanishing rfphon and/or rfelfd, in the norm-conserving case.
|
|
- DOI and bibtex: see https://docs.abinit.org/theory/bibliography/#gonze1997
|
|
-
|
|
- [3] Dynamical matrices, Born effective charges, dielectric permittivity tensors, and ,
|
|
- interatomic force constants from density-functional perturbation theory,
|
|
- X. Gonze and C. Lee, Phys. Rev. B55, 10355 (1997).
|
|
- Comment: Non-vanishing rfphon and/or rfelfd, in the norm-conserving case.
|
|
- DOI and bibtex: see https://docs.abinit.org/theory/bibliography/#gonze1997a
|
|
-
|
|
- [4] ABINIT: Overview, and focus on selected capabilities
|
|
- J. Chem. Phys. 152, 124102 (2020).
|
|
- A. Romero, D.C. Allan, B. Amadon, G. Antonius, T. Applencourt, L.Baguet,
|
|
- J.Bieder, F.Bottin, J.Bouchet, E.Bousquet, F.Bruneval,
|
|
- G.Brunin, D.Caliste, M.Cote,
|
|
- J.Denier, C. Dreyer, Ph.Ghosez, M.Giantomassi, Y.Gillet, O.Gingras,
|
|
- D.R.Hamann, G.Hautier, F.Jollet, G. Jomard,
|
|
- A.Martin,
|
|
- H.P.C. Miranda, F.Naccarato, G.Petretto, N.A. Pike, V.Planes,
|
|
- S.Prokhorenko, T. Rangel, F.Ricci, G.-M.Rignanese, M.Royo, M.Stengel, M.Torrent,
|
|
- M.J.van Setten, B.Van Troeye, M.J.Verstraete, J.Wiktor, J.W.Zwanziger, and X.Gonze.
|
|
- Comment: a global overview of ABINIT, with focus on selected capabilities .
|
|
- Note that a version of this paper, that is not formatted for J. Chem. Phys
|
|
- is available at https://www.abinit.org/sites/default/files/ABINIT20_JPC.pdf .
|
|
- The licence allows the authors to put it on the Web.
|
|
- DOI and bibtex: see https://docs.abinit.org/theory/bibliography/#romero2020
|
|
-
|
|
- [5] Recent developments in the ABINIT software package.
|
|
- Computer Phys. Comm. 205, 106 (2016).
|
|
- X.Gonze, F.Jollet, F.Abreu Araujo, D.Adams, B.Amadon, T.Applencourt,
|
|
- C.Audouze, J.-M.Beuken, J.Bieder, A.Bokhanchuk, E.Bousquet, F.Bruneval
|
|
- D.Caliste, M.Cote, F.Dahm, F.Da Pieve, M.Delaveau, M.Di Gennaro,
|
|
- B.Dorado, C.Espejo, G.Geneste, L.Genovese, A.Gerossier, M.Giantomassi,
|
|
- Y.Gillet, D.R.Hamann, L.He, G.Jomard, J.Laflamme Janssen, S.Le Roux,
|
|
- A.Levitt, A.Lherbier, F.Liu, I.Lukacevic, A.Martin, C.Martins,
|
|
- M.J.T.Oliveira, S.Ponce, Y.Pouillon, T.Rangel, G.-M.Rignanese,
|
|
- A.H.Romero, B.Rousseau, O.Rubel, A.A.Shukri, M.Stankovski, M.Torrent,
|
|
- M.J.Van Setten, B.Van Troeye, M.J.Verstraete, D.Waroquier, J.Wiktor,
|
|
- B.Xu, A.Zhou, J.W.Zwanziger.
|
|
- Comment: the fourth generic paper describing the ABINIT project.
|
|
- Note that a version of this paper, that is not formatted for Computer Phys. Comm.
|
|
- is available at https://www.abinit.org/sites/default/files/ABINIT16.pdf .
|
|
- The licence allows the authors to put it on the Web.
|
|
- DOI and bibtex: see https://docs.abinit.org/theory/bibliography/#gonze2016
|
|
-
|
|
- Proc. 0 individual time (sec): cpu= 1.5 wall= 1.5
|
|
|
|
================================================================================
|
|
|
|
Calculation completed.
|
|
.Delivered 24 WARNINGs and 10 COMMENTs to log file.
|
|
+Overall time at end (sec) : cpu= 1.5 wall= 1.5
|