mirror of https://gitlab.com/QEF/q-e.git
400 lines
15 KiB
Plaintext
400 lines
15 KiB
Plaintext
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Program PWSCF v.6.5 starts on 19Jun2020 at 19:47:38
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This program is part of the open-source Quantum ESPRESSO suite
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for quantum simulation of materials; please cite
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"P. Giannozzi et al., J. Phys.:Condens. Matter 21 395502 (2009);
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"P. Giannozzi et al., J. Phys.:Condens. Matter 29 465901 (2017);
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URL http://www.quantum-espresso.org",
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in publications or presentations arising from this work. More details at
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http://www.quantum-espresso.org/quote
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Parallel version (MPI), running on 4 processors
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MPI processes distributed on 1 nodes
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R & G space division: proc/nbgrp/npool/nimage = 4
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Fft bands division: nmany = 1
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Reading input from C.in
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Current dimensions of program PWSCF are:
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Max number of different atomic species (ntypx) = 10
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Max number of k-points (npk) = 40000
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Max angular momentum in pseudopotentials (lmaxx) = 3
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file C.pbe-rrkjus.UPF: wavefunction(s) 2S 2P renormalized
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Subspace diagonalization in iterative solution of the eigenvalue problem:
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one sub-group per band group will be used
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scalapack distributed-memory algorithm (size of sub-group: 2* 2 procs)
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Parallelization info
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--------------------
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sticks: dense smooth PW G-vecs: dense smooth PW
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Min 109 52 17 25471 8148 1532
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Max 110 54 19 25518 8171 1541
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Sum 439 211 73 101987 32639 6147
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bravais-lattice index = 4
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lattice parameter (alat) = 4.6625 a.u.
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unit-cell volume = 1165.9566 (a.u.)^3
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number of atoms/cell = 6
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number of atomic types = 1
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number of electrons = 24.00
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number of Kohn-Sham states= 16
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kinetic-energy cutoff = 35.0000 Ry
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charge density cutoff = 300.0000 Ry
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convergence threshold = 1.0E-06
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mixing beta = 0.7000
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number of iterations used = 8 plain mixing
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Exchange-correlation= SLA PW PBE PBE
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( 1 4 3 4 0 0 0)
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celldm(1)= 4.662502 celldm(2)= 0.000000 celldm(3)= 13.282950
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celldm(4)= 0.000000 celldm(5)= 0.000000 celldm(6)= 0.000000
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crystal axes: (cart. coord. in units of alat)
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a(1) = ( 1.000000 0.000000 0.000000 )
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a(2) = ( -0.500000 0.866025 0.000000 )
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a(3) = ( 0.000000 0.000000 13.282950 )
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reciprocal axes: (cart. coord. in units 2 pi/alat)
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b(1) = ( 1.000000 0.577350 0.000000 )
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b(2) = ( 0.000000 1.154701 0.000000 )
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b(3) = ( 0.000000 0.000000 0.075284 )
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PseudoPot. # 1 for C read from file:
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/home/giannozz/espresso/pseudo/C.pbe-rrkjus.UPF
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MD5 check sum: 00fb224312de0c5b6853bd333518df6f
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Pseudo is Ultrasoft, Zval = 4.0
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Generated by new atomic code, or converted to UPF format
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Using radial grid of 627 points, 4 beta functions with:
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l(1) = 0
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l(2) = 0
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l(3) = 1
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l(4) = 1
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Q(r) pseudized with 0 coefficients
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atomic species valence mass pseudopotential
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C 4.00 12.01060 C ( 1.00)
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6 Sym. Ops. (no inversion) found
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Cartesian axes
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site n. atom positions (alat units)
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1 C tau( 1) = ( 0.0000000 0.0000000 0.7547131 )
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2 C tau( 2) = ( 0.0000000 0.0000000 3.7735654 )
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3 C tau( 3) = ( 0.0000000 0.0000000 2.2641392 )
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4 C tau( 4) = ( -0.0000000 0.5773503 0.7547131 )
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5 C tau( 5) = ( -0.0000000 0.5773503 3.7735654 )
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6 C tau( 6) = ( 0.5000000 0.2886751 2.2641392 )
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number of k points= 3 Gaussian smearing, width (Ry)= 0.0100
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cart. coord. in units 2pi/alat
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k( 1) = ( 0.0000000 0.0000000 0.0000000), wk = 0.2222222
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k( 2) = ( 0.0000000 0.3849002 0.0000000), wk = 1.3333333
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k( 3) = ( 0.3333333 0.5773503 0.0000000), wk = 0.4444444
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Dense grid: 101987 G-vectors FFT dimensions: ( 25, 25, 360)
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Smooth grid: 32639 G-vectors FFT dimensions: ( 18, 18, 240)
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Estimated max dynamical RAM per process > 39.63 MB
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Estimated total dynamical RAM > 158.51 MB
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----2D----2D----2D----2D----2D----2D----2D----2D----2D----2D----2D----2D
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The code is running with the 2D cutoff
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Please refer to:
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Sohier, T., Calandra, M., & Mauri, F. (2017),
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Density functional perturbation theory for gated two-dimensional heterostructu
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res:
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Theoretical developments and application to flexural phonons in graphene.
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Physical Review B, 96(7), 75448. https://doi.org/10.1103/PhysRevB.96.075448
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----2D----2D----2D----2D----2D----2D----2D----2D----2D----2D----2D----2D
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Initial potential from superposition of free atoms
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starting charge 23.99968, renormalised to 24.00000
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negative rho (up, down): 1.944E-05 0.000E+00
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Starting wfcs are 24 randomized atomic wfcs
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total cpu time spent up to now is 0.2 secs
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Self-consistent Calculation
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iteration # 1 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.00E-02, avg # of iterations = 2.7
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negative rho (up, down): 1.291E-05 0.000E+00
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total cpu time spent up to now is 0.4 secs
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total energy = -68.16475502 Ry
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estimated scf accuracy < 0.60805282 Ry
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iteration # 2 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 2.53E-03, avg # of iterations = 5.7
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negative rho (up, down): 5.769E-05 0.000E+00
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total cpu time spent up to now is 0.6 secs
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total energy = -68.04467159 Ry
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estimated scf accuracy < 0.37105447 Ry
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iteration # 3 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.55E-03, avg # of iterations = 3.7
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negative rho (up, down): 4.685E-04 0.000E+00
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total cpu time spent up to now is 0.7 secs
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total energy = -67.80842088 Ry
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estimated scf accuracy < 5.31694345 Ry
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iteration # 4 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.55E-03, avg # of iterations = 5.0
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negative rho (up, down): 3.298E-04 0.000E+00
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total cpu time spent up to now is 0.9 secs
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total energy = -68.13947869 Ry
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estimated scf accuracy < 3.71809860 Ry
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iteration # 5 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.55E-03, avg # of iterations = 2.3
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negative rho (up, down): 1.962E-04 0.000E+00
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total cpu time spent up to now is 1.0 secs
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total energy = -68.24575108 Ry
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estimated scf accuracy < 0.63979592 Ry
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iteration # 6 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.55E-03, avg # of iterations = 1.0
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negative rho (up, down): 1.281E-04 0.000E+00
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total cpu time spent up to now is 1.2 secs
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total energy = -68.24525539 Ry
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estimated scf accuracy < 0.49666201 Ry
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iteration # 7 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.55E-03, avg # of iterations = 1.0
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negative rho (up, down): 1.120E-04 0.000E+00
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total cpu time spent up to now is 1.3 secs
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total energy = -68.25289355 Ry
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estimated scf accuracy < 0.61971420 Ry
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iteration # 8 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.55E-03, avg # of iterations = 1.0
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negative rho (up, down): 6.090E-05 0.000E+00
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total cpu time spent up to now is 1.4 secs
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total energy = -68.25451364 Ry
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estimated scf accuracy < 0.03622502 Ry
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iteration # 9 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.51E-04, avg # of iterations = 2.7
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negative rho (up, down): 6.312E-05 0.000E+00
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total cpu time spent up to now is 1.6 secs
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total energy = -68.25670632 Ry
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estimated scf accuracy < 0.07123130 Ry
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iteration # 10 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.51E-04, avg # of iterations = 1.0
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negative rho (up, down): 7.667E-05 0.000E+00
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total cpu time spent up to now is 1.7 secs
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total energy = -68.25530087 Ry
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estimated scf accuracy < 0.05487794 Ry
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iteration # 11 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.51E-04, avg # of iterations = 1.0
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negative rho (up, down): 3.281E-05 0.000E+00
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total cpu time spent up to now is 1.8 secs
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total energy = -68.25616997 Ry
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estimated scf accuracy < 0.00587986 Ry
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iteration # 12 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 2.45E-05, avg # of iterations = 4.7
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negative rho (up, down): 3.189E-05 0.000E+00
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total cpu time spent up to now is 2.0 secs
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total energy = -68.25611349 Ry
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estimated scf accuracy < 0.00530212 Ry
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iteration # 13 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 2.21E-05, avg # of iterations = 1.0
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negative rho (up, down): 3.068E-05 0.000E+00
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total cpu time spent up to now is 2.1 secs
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total energy = -68.25615952 Ry
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estimated scf accuracy < 0.00193715 Ry
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iteration # 14 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 8.07E-06, avg # of iterations = 1.0
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negative rho (up, down): 2.971E-05 0.000E+00
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total cpu time spent up to now is 2.2 secs
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total energy = -68.25616823 Ry
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estimated scf accuracy < 0.00003300 Ry
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iteration # 15 ecut= 35.00 Ry beta= 0.70
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Davidson diagonalization with overlap
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ethr = 1.38E-07, avg # of iterations = 3.0
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negative rho (up, down): 2.963E-05 0.000E+00
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total cpu time spent up to now is 2.4 secs
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End of self-consistent calculation
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k = 0.0000 0.0000 0.0000 ( 4167 PWs) bands (ev):
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-23.7446 -23.7011 -23.6540 -12.2164 -11.8406 -11.4259 -7.2865 -7.2865
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-7.2850 -7.2850 -7.2820 -7.2820 -0.8717 -0.6440 0.3650 1.0430
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k = 0.0000 0.3849 0.0000 ( 4058 PWs) bands (ev):
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-21.1592 -21.1234 -21.0844 -13.8619 -13.8448 -13.8252 -10.0234 -10.0179
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-10.0106 -9.1717 -8.8502 -8.5018 0.5021 0.6589 0.8411 2.5867
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k = 0.3333 0.5774 0.0000 ( 4056 PWs) bands (ev):
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-16.8220 -16.7965 -16.7958 -16.7955 -16.7927 -16.7690 -14.7737 -14.7733
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-14.7707 -4.4760 -4.2342 -4.2339 -4.2319 -4.2296 -3.9784 6.1712
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the Fermi energy is -4.2323 ev
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! total energy = -68.25616850 Ry
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estimated scf accuracy < 0.00000014 Ry
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smearing contrib. (-TS) = -0.00510333 Ry
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internal energy E=F+TS = -68.25106517 Ry
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The total energy is F=E-TS. E is the sum of the following terms:
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one-electron contribution = -3408.94071569 Ry
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hartree contribution = 1706.45368624 Ry
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xc contribution = -21.05321160 Ry
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ewald contribution = 1655.28917588 Ry
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convergence has been achieved in 15 iterations
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Forces acting on atoms (cartesian axes, Ry/au):
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atom 1 type 1 force = 0.00000000 0.00000000 0.00335511
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atom 2 type 1 force = 0.00000000 0.00000000 -0.00338326
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atom 3 type 1 force = 0.00000000 0.00000000 -0.00000260
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atom 4 type 1 force = 0.00000000 0.00000000 -0.00126982
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atom 5 type 1 force = 0.00000000 0.00000000 0.00127816
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atom 6 type 1 force = 0.00000000 0.00000000 0.00002240
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Total force = 0.005094 Total SCF correction = 0.000879
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SCF correction compared to forces is large: reduce conv_thr to get better values
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Computing stress (Cartesian axis) and pressure
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total stress (Ry/bohr**3) (kbar) P= 2.70
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0.00004064 0.00000000 0.00000000 5.98 0.00 0.00
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0.00000000 0.00004064 0.00000000 0.00 5.98 0.00
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0.00000000 0.00000000 -0.00002620 0.00 0.00 -3.85
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Writing output data file ./pwscf.save/
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init_run : 0.14s CPU 0.19s WALL ( 1 calls)
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electrons : 2.00s CPU 2.14s WALL ( 1 calls)
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forces : 0.04s CPU 0.05s WALL ( 1 calls)
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stress : 0.15s CPU 0.15s WALL ( 1 calls)
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Called by init_run:
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wfcinit : 0.04s CPU 0.04s WALL ( 1 calls)
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potinit : 0.05s CPU 0.06s WALL ( 1 calls)
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hinit0 : 0.02s CPU 0.04s WALL ( 1 calls)
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Called by electrons:
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c_bands : 0.95s CPU 1.03s WALL ( 15 calls)
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sum_band : 0.47s CPU 0.50s WALL ( 15 calls)
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v_of_rho : 0.31s CPU 0.34s WALL ( 16 calls)
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newd : 0.21s CPU 0.23s WALL ( 16 calls)
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mix_rho : 0.05s CPU 0.05s WALL ( 15 calls)
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Called by c_bands:
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init_us_2 : 0.02s CPU 0.02s WALL ( 99 calls)
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cegterg : 0.88s CPU 0.95s WALL ( 45 calls)
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Called by *egterg:
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cdiaghg : 0.13s CPU 0.13s WALL ( 155 calls)
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h_psi : 0.70s CPU 0.76s WALL ( 158 calls)
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s_psi : 0.01s CPU 0.02s WALL ( 158 calls)
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g_psi : 0.00s CPU 0.00s WALL ( 110 calls)
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Called by h_psi:
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h_psi:calbec : 0.02s CPU 0.02s WALL ( 158 calls)
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vloc_psi : 0.66s CPU 0.72s WALL ( 158 calls)
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add_vuspsi : 0.02s CPU 0.02s WALL ( 158 calls)
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General routines
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calbec : 0.03s CPU 0.03s WALL ( 218 calls)
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fft : 0.21s CPU 0.25s WALL ( 214 calls)
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ffts : 0.01s CPU 0.01s WALL ( 31 calls)
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fftw : 0.74s CPU 0.81s WALL ( 4176 calls)
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interpolate : 0.02s CPU 0.02s WALL ( 16 calls)
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Parallel routines
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fft_scatt_xy : 0.13s CPU 0.14s WALL ( 4421 calls)
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fft_scatt_yz : 0.28s CPU 0.31s WALL ( 4421 calls)
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PWSCF : 2.35s CPU 2.57s WALL
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This run was terminated on: 19:47:40 19Jun2020
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=------------------------------------------------------------------------------=
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JOB DONE.
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=------------------------------------------------------------------------------=
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