mirror of https://github.com/QMCPACK/qmcpack.git
515 lines
20 KiB
Plaintext
515 lines
20 KiB
Plaintext
Input file(s): qmc.in.xml
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=====================================================
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QMCPACK 1.0.0
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(c) Copyright 2003- QMCPACK developers
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Subversion branch 6259
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Last modified 2014-02-28 09:47:36 -0500 (Fri, 28 Feb 2014)
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=====================================================
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Global options
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async_swap=0 : using blocking send/recv for walker swaps
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MPI Nodes = 4
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MPI Nodes per group = 4
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MPI Group ID = 0
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OMP_NUM_THREADS = 4
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Input XML = qmc.in.xml
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Project = qmc
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date = 2015-08-10 13:03:50 EDT
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host = psi1.ornl.gov
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user = j1k
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DO NOT READ DENSITY
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Offset for the random number seeds based on time 374
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Random number offset = 374 seeds = 2579-2693
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ParticleSetPool::putLattice
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Create Global SuperCell
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Simulation cell radius = 1.873851
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Wigner-Seitz radius = 2.163736
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<unitcell>
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<parameter name="lattice">
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4.3274728400 0.0000000000 0.0000000000
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-2.1637364200 3.7477014200 0.0000000000
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-0.0000000000 -0.0000000000 6.7811499500
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</parameter>
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<parameter name="bconds"> p p p </parameter>
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<note>
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Volume (A^3) = 109.9772059853
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Reciprocal vectors without 2*pi.
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g_1 = 0.2310817507 0.1334151107 0.0000000000
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g_2 = -0.0000000000 0.2668302215 0.0000000000
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g_3 = 0.0000000000 -0.0000000000 0.1474676135
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Metric tensor in real-space.
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h_1 = 18.7270211809 -9.3635105905 0.0000000000
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h_2 = -9.3635105905 18.7270212287 0.0000000000
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h_3 = 0.0000000000 0.0000000000 45.9839946444
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Metric tensor in g-space.
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h_1 = 2.8107988764 1.4053994346 0.0000000000
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h_2 = 1.4053994346 2.8107988693 0.0000000000
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h_3 = 0.0000000000 0.0000000000 0.8585251871
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</note>
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<note>
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Long-range breakup parameters:
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rc*kc = 15.0000000000; rc = 1000000.0000000000; kc = 0.0000000000
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</note>
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</unitcell>
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ParticleSetPool::put
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Creating e particleset
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Initializing the lattice of e by the global supercell
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XMLParticleParser::putSpecial
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All the species have the same mass 1.0000000000
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Particles are grouped. Safe to use groups
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Long-range breakup parameters:
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rc*kc = 15.0000000000; rc = 1.8738507076; kc = 8.0049066551
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WignerSeitzRadius = 2.1637364200
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SimulationCellRadius = 1.8738507076
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Long-range breakup parameters:
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rc*kc = 15.0000000000; rc = 1.8738507076; kc = 8.0049066551
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WignerSeitzRadius = 2.1637364200
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SimulationCellRadius = 1.8738507076
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---------------------------------------
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<unitcell>
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<parameter name="lattice">
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4.3274728400 0.0000000000 0.0000000000
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-2.1637364200 3.7477014200 0.0000000000
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-0.0000000000 -0.0000000000 6.7811499500
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</parameter>
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<parameter name="bconds"> p p p </parameter>
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<note>
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Volume (A^3) = 109.9772059853
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Reciprocal vectors without 2*pi.
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g_1 = 0.2310817507 0.1334151107 0.0000000000
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g_2 = -0.0000000000 0.2668302215 0.0000000000
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g_3 = 0.0000000000 -0.0000000000 0.1474676135
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Metric tensor in real-space.
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h_1 = 18.7270211809 -9.3635105905 0.0000000000
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h_2 = -9.3635105905 18.7270212287 0.0000000000
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h_3 = 0.0000000000 0.0000000000 45.9839946444
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Metric tensor in g-space.
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h_1 = 2.8107988764 1.4053994346 0.0000000000
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h_2 = 1.4053994346 2.8107988693 0.0000000000
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h_3 = 0.0000000000 0.0000000000 0.8585251871
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</note>
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<note>
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Long-range breakup parameters:
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rc*kc = 15.0000000000; rc = 1.8738507076; kc = 8.0049066551
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</note>
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</unitcell>
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---------------------------------------
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Creating Structure Factor for periodic systems 8.0049066551
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KContainer initialised with cutoff 8.0049066551
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# of K-shell = 74
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# of K points = 964
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e
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ParticleSetPool::put
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Creating ion0 particleset
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Initializing the lattice of ion0 by the global supercell
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XMLParticleParser::putSpecial
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All the species have the same mass 16428.2356024000
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Particles are grouped. Safe to use groups
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Long-range breakup parameters:
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rc*kc = 15.0000000000; rc = 1.8738507076; kc = 8.0049066551
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WignerSeitzRadius = 2.1637364200
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SimulationCellRadius = 1.8738507076
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Long-range breakup parameters:
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rc*kc = 15.0000000000; rc = 1.8738507076; kc = 8.0049066551
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WignerSeitzRadius = 2.1637364200
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SimulationCellRadius = 1.8738507076
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---------------------------------------
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<unitcell>
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<parameter name="lattice">
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4.3274728400 0.0000000000 0.0000000000
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-2.1637364200 3.7477014200 0.0000000000
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-0.0000000000 -0.0000000000 6.7811499500
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</parameter>
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<parameter name="bconds"> p p p </parameter>
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<note>
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Volume (A^3) = 109.9772059853
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Reciprocal vectors without 2*pi.
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g_1 = 0.2310817507 0.1334151107 0.0000000000
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g_2 = -0.0000000000 0.2668302215 0.0000000000
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g_3 = 0.0000000000 -0.0000000000 0.1474676135
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Metric tensor in real-space.
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h_1 = 18.7270211809 -9.3635105905 0.0000000000
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h_2 = -9.3635105905 18.7270212287 0.0000000000
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h_3 = 0.0000000000 0.0000000000 45.9839946444
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Metric tensor in g-space.
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h_1 = 2.8107988764 1.4053994346 0.0000000000
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h_2 = 1.4053994346 2.8107988693 0.0000000000
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h_3 = 0.0000000000 0.0000000000 0.8585251871
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</note>
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<note>
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Long-range breakup parameters:
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rc*kc = 15.0000000000; rc = 1.8738507076; kc = 8.0049066551
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</note>
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</unitcell>
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---------------------------------------
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Creating Structure Factor for periodic systems 8.0049066551
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KContainer initialised with cutoff 8.0049066551
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# of K-shell = 74
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# of K points = 964
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ion0
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Adding WavefunctionFactory for psi0
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WaveFunctionFactory::build
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WaveFunctionFactory::addFermionTerm
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SlaterDetBuilder::put(xmlNodePtr)
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BasisSetFactory::createBasisSet
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EinsplineSetBuilder: using libeinspline for B-spline orbitals.
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Built BasisSetBuilder "einspline" of type einspline
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Building SPOset with basis set.
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TOKEN=0 createSPOSetFromXML /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilder_createSPOs.cpp 42
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Reading 1 orbitals from HDF5 file.
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TOKEN=1 ReadOrbitalInfo /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilderOld.cpp 34
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HDF5 orbital file version 2.0.0
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TOKEN=2 ReadOrbitalInfo_ESHDF /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilderESHDF.fft.cpp 47
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Reading orbital file in ESHDF format.
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ESHDF orbital file version 2.0.0
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Lattice =
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[ 4.327473 0.000000 0.000000
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-2.163736 3.747701 0.000000
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0.000000 0.000000 6.781150 ]
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TOKEN=3 CheckLattice /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilderCommon.cpp 79
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SuperLattice =
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[ 4.327473 0.000000 0.000000
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-2.163736 3.747701 0.000000
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0.000000 0.000000 6.781150 ]
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bands=5, elecs=2, spins=1, twists=1, muffin tins=0, core states=0
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atomic orbital=0
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Atom type(0) = 4
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Skip initialization of the density
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TIMER EinsplineSetBuilder::ReadOrbitalInfo 0.0011830330
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TIMER EinsplineSetBuilder::BroadcastOrbitalInfo 0.0000360012
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Found 1 distinct supercell twists.
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number of things
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1
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1
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Super twist #0: [ 0.00000 0.00000 0.00000 ]
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Using supercell twist 0: [ 0.00000 0.00000 0.00000]
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Using 1 copies of twist angle [ 0.000, 0.000, 0.000]
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Using real orbitals.
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TOKEN=4 TileIons /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilderCommon.cpp 272
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TOKEN=5 OccupyBands /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilderCommon.cpp 731
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TOKEN=6 OccupyBands_ESHDF /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilderESHDF.fft.cpp 308
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Sorting the bands now:
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We will read 1 distinct orbitals.
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There are 0 core states and 1 valence states.
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TOKEN=7 bcastSortBands /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/einspline_helper.hpp 407
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BandInfoGroup::selectBands bigspace has 5 distinct orbitals
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BandInfoGroup::selectBands using distinct orbitals [0,1)
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Number of distinct bands 1
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First Band index 0
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First SPO index 0
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Size of SPOs 1
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SplineC2XAdoptorReader::create_spline_set(spin,SPE*)
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AdoptorName = SplineR2RAdoptor
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Using real einspline table
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NumDistinctOrbitals 1 numOrbs = 1
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TwistIndex = 0 TwistAngle 0.0000000000 0.0000000000 0.0000000000
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HalfG = 0 0 0
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TOKEN=8 ReadGvectors_ESHDF /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilderReadBands_ESHDF.cpp 658
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B-spline mesh factor is 1.0000000000
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B-spline mesh size is (40, 40, 68)
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Maxmimum number of Gvecs 7343
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Using meshsize= 40 40 68
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vs input meshsize= 40 40 68
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Time to read the table in einspline.tile_100010001.spin_0.tw_0.l0u1.g40x40x68.h5 = 0.0005140305
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SplineAdoptorReader initialize_spline_slow 0.0066490173 sec
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Using Identity for the LCOrbitalSet
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BasisSetFactory::createBasisSet
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Reuse BasisSetBuilder "einspline" type einspline
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Building SPOset with basis set.
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TOKEN=9 createSPOSetFromXML /home/j1k/apps/qmcpack/qmcpack_r6259/src/QMCWaveFunctions/EinsplineSetBuilder_createSPOs.cpp 42
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SPOSet parameters match in EinsplineSetBuilder: cloning EinsplineSet object.
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Using Identity for the LCOrbitalSet
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SlaterDetBuilder::putDeterminant(xmlNodePtr,int)
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Creating a determinant updet group=0 sposet=updet
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Reusing a SPO set updet
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SlaterDetBuilder::putDeterminant(xmlNodePtr,int)
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Creating a determinant downdet group=1 sposet=downdet
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Reusing a SPO set downdet
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FermionWF=SlaterDet
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JastrowBuilder::addOneBody(xmlNodePtr)
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Using BsplineBuilder for one-body jastrow with B-spline functions
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BsplineJastrowBuilder::put(xmlNodePtr)
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BsplineJastrowBuilder::createOneBodyJastrow(xmlNodePtr)
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Distance table for AA: source/target = e
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PBC=bulk Orthorhombic=no Using SymmetricDTD<T,D,PPPG> 7
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Setting Rmax = 1.87385 Using bounding box/reduced coordinates with
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... ParticleSet::addTable Create Table #0 e_e
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Distance table for AB: source = ion0 target = e
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PBC=bulk Orthorhombic=no Using AsymmetricDTD<T,D,PPPG> 7
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Setting Rmax = 1.87385 Using bonding box/reduced coordinates
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... ParticleSet::addTable Create Table #1 ion0_e
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... ParticleSet::addTable Reuse Table #1 ion0_e
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BsplineFunctor::put(xmlNodePtr)
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Jastrow cutoff unspecified. Setting to Wigner-Seitz radius = 2.1637364200.
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size = 8 parameters
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cusp = 0.0000000000
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rcut = 2.1637364200
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Parameter Name Value
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eBe_0 -0.0014346891 1 1 ON 0
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eBe_1 0.0016079838 1 1 ON 1
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eBe_2 0.0000749527 1 1 ON 2
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eBe_3 0.0007666618 1 1 ON 3
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eBe_4 -0.0006881806 1 1 ON 4
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eBe_5 0.0015248766 1 1 ON 5
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eBe_6 0.0042910344 1 1 ON 6
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eBe_7 0.0012703049 1 1 ON 7
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JastrowBuilder::addTwoBody(xmlNodePtr)
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BsplineJastrowBuilder::put(xmlNodePtr)
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BsplineJastrowBuilder adds a functor with cusp = -0.2500000000
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BsplineFunctor::put(xmlNodePtr)
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Jastrow cutoff unspecified. Setting to Wigner-Seitz radius = 2.1637364200.
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size = 8 parameters
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cusp = -0.2500000000
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rcut = 2.1637364200
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Parameter Name Value
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uu_0 0.5086871406 1 1 ON 0
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uu_1 0.4435499818 1 1 ON 1
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uu_2 0.3418059659 1 1 ON 2
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uu_3 0.2327878150 1 1 ON 3
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uu_4 0.1401140100 1 1 ON 4
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uu_5 0.0745314746 1 1 ON 5
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uu_6 0.0350372317 1 1 ON 6
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uu_7 0.0145561282 1 1 ON 7
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BsplineJastrowBuilder adds a functor with cusp = -0.5000000000
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BsplineFunctor::put(xmlNodePtr)
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Jastrow cutoff unspecified. Setting to Wigner-Seitz radius = 2.1637364200.
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size = 8 parameters
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cusp = -0.5000000000
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rcut = 2.1637364200
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Parameter Name Value
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ud_0 0.7182983331 1 1 ON 0
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ud_1 0.6061682338 1 1 ON 1
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ud_2 0.4584182023 1 1 ON 2
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ud_3 0.3015362926 1 1 ON 3
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ud_4 0.1758671343 1 1 ON 4
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ud_5 0.0983706821 1 1 ON 5
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ud_6 0.0454628154 1 1 ON 6
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ud_7 0.0174907102 1 1 ON 7
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HamiltonianPool::put
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QMCHamiltonian::addOperator Kinetic to H, physical Hamiltonian
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ForceBase::ForceBase
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... ParticleSet::addTable Reuse Table #0 e_e
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CoulombPBCAA::CoulombPBCAA
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... ParticleSet::addTable Reuse Table #0 e_e
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Creating CoulombHandler with the optimal breakup.
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KContainer initialised with cutoff 39.3429477167
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# of K-shell = 4840
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# of K points = 113076
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finding kc: 8.0049066551 , -1.0000000000
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LRBreakp parameter Kc =8.0049066551
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Continuum approximation in k = [39.3429477167,3201.9626620373)
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PBCAA self-interaction term -1.6268480840
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PBCAA total constant -1.6529692123
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Maximum K shell 73
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Number of k vectors 964
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Fixed Coulomb potential for e
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e-e Madelung Const. =-0.2613475539
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Vtot =0.0000000000
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QMCHamiltonian::addOperator ElecElec to H, physical Hamiltonian
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ForceBase::ForceBase
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Distance table for AA: source/target = ion0
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PBC=bulk Orthorhombic=no Using SymmetricDTD<T,D,PPPG> 7
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Setting Rmax = 1.87385 Using bounding box/reduced coordinates with
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... ParticleSet::addTable Create Table #0 ion0_ion0
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CoulombPBCAA::CoulombPBCAA
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... ParticleSet::addTable Reuse Table #0 ion0_ion0
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Clone CoulombHandler.
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PBCAA self-interaction term -3.2536961679
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PBCAA total constant -3.2798172963
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Maximum K shell 73
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Number of k vectors 964
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Fixed Coulomb potential for ion0
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e-e Madelung Const. =-0.2613475539
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Vtot =-1.0715113440
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QMCHamiltonian::addOperator IonIon to H, physical Hamiltonian
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ECPotential builder for pseudopotential
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Adding pseudopotential for Be
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Linear grid ri=0.0000000000 rf=10.0000000000 npts = 10001
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ECPComponentBuilder::buildSemiLocalAndLocal
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Assuming Hartree unit
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Number of angular momentum channels 2
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Maximum angular momentum channel 1
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Creating a Linear Grid Rmax=2.2800000000
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Using global grid with delta = 0.0010000000
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Making L=1 a local potential with a radial cutoff of 9.9980000000
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NonLocalECPComponent::resize_warrays
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Non-local pseudopotential parameters
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Maximum angular mementum = 0
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Number of non-local channels = 1
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l(0)=0
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Cutoff radius = 2.2800000000
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Spherical grids and weights:
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1.0000000000 0.0000000000 0.0000000000 0.0833333333
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-1.0000000000 0.0000000000 0.0000000000 0.0833333333
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0.4472135955 0.8944271910 0.0000000000 0.0833333333
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-0.4472135955 0.7236067977 0.5257311121 0.0833333333
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0.4472135955 0.2763932023 0.8506508084 0.0833333333
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-0.4472135955 -0.2763932023 0.8506508084 0.0833333333
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0.4472135955 -0.7236067977 0.5257311121 0.0833333333
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-0.4472135955 -0.8944271910 0.0000000000 0.0833333333
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0.4472135955 -0.7236067977 -0.5257311121 0.0833333333
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-0.4472135955 -0.2763932023 -0.8506508084 0.0833333333
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0.4472135955 0.2763932023 -0.8506508084 0.0833333333
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-0.4472135955 0.7236067977 -0.5257311121 0.0833333333
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Maximum cutoff radius 2.2800000000
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ForceBase::ForceBase
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... ParticleSet::addTable Reuse Table #1 ion0_e
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CoulombPBCAB::CoulombPBCAB
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... ParticleSet::addTable Reuse Table #1 ion0_e
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Clone CoulombHandler.
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Constant of PBCAB 0.0522422566
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Maximum K shell 73
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Number of k vectors 964
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CoulombPBCAB::add
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Setting a linear grid=[0,1.8738507076) number of grid =1874
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Creating the short-range pseudopotential for species 0
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QMCHamiltonian::addOperator LocalECP to H, physical Hamiltonian
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ForceBase::ForceBase
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... ParticleSet::addTable Reuse Table #1 ion0_e
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... ParticleSet::addTable Reuse Table #1 ion0_e
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Using NonLocalECP potential
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Maximum grid on a sphere for NonLocalECPotential: 12
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WARNING ParticleSet::checkBoundBox 4.5600000000> SimulationCellRadius=1.8738507076
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Using SLOW method for the sphere update.
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QMCHamiltonian::addOperator NonLocalECP to H, physical Hamiltonian
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QMCHamiltonian::add2WalkerProperty added
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5 to P::PropertyList
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0 to P::Collectables
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starting Index of the observables in P::PropertyList = 9
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Hamiltonian disables VirtualMoves
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ParticleSetPool::randomize
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=========================================================
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Summary of QMC systems
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=========================================================
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ParticleSetPool has:
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ParticleSet e : 0 1 2
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2
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u 4.6970488060e-01 6.0610431482e-01 2.9353468640e+00
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d 2.2986063627e+00 1.7072980158e+00 4.5668911134e+00
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ParticleSet ion0 : 0 1
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1
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Be 0.0000000000e+00 0.0000000000e+00 0.0000000000e+00
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Hamiltonian h0
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Kinetic Kinetic energy
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ElecElec CoulombPBCAA potential: e_e
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IonIon CoulombPBCAA potential: ion0_ion0
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LocalECP CoulombPBCAB potential source: ion0
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NonLocalECP NonLocalECPotential: ion0
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=========================================================
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Start VMCSingleOMP
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File Root qmc.s000 append = no
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=========================================================
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Adding 4 walkers to 0 existing sets
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Total number of walkers: 1.6000000000e+01
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Total weight: 1.6000000000e+01
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Resetting Properties of the walkers 1 x 14
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<vmc function="put">
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qmc_counter=0 my_counter=0
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time step = 3.0000000000e-01
|
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blocks = 1000
|
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steps = 24960
|
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substeps = 2
|
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current = 0
|
|
target samples = 0.0000000000e+00
|
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walkers/mpi = 4
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|
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stepsbetweensamples = 24984960
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<parameter name="blocks" condition="int">1000</parameter>
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<parameter name="check_properties" condition="int">100</parameter>
|
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<parameter name="checkproperties" condition="int">100</parameter>
|
|
<parameter name="current" condition="int">0</parameter>
|
|
<parameter name="dmcwalkersperthread" condition="real">0.0000000000e+00</parameter>
|
|
<parameter name="maxcpusecs" condition="real">3.6000000000e+05</parameter>
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<parameter name="record_configs" condition="int">0</parameter>
|
|
<parameter name="record_walkers" condition="int">24984960</parameter>
|
|
<parameter name="recordconfigs" condition="int">0</parameter>
|
|
<parameter name="recordwalkers" condition="int">24984960</parameter>
|
|
<parameter name="rewind" condition="int">0</parameter>
|
|
<parameter name="samples" condition="real">0.0000000000e+00</parameter>
|
|
<parameter name="samplesperthread" condition="real">0.0000000000e+00</parameter>
|
|
<parameter name="steps" condition="int">24960</parameter>
|
|
<parameter name="stepsbetweensamples" condition="int">24984960</parameter>
|
|
<parameter name="store_configs" condition="int">0</parameter>
|
|
<parameter name="storeconfigs" condition="int">0</parameter>
|
|
<parameter name="sub_steps" condition="int">2</parameter>
|
|
<parameter name="substeps" condition="int">2</parameter>
|
|
<parameter name="tau" condition="au">3.0000000000e-01</parameter>
|
|
<parameter name="time_step" condition="au">3.0000000000e-01</parameter>
|
|
<parameter name="timestep" condition="au">3.0000000000e-01</parameter>
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<parameter name="use_drift" condition="string">yes</parameter>
|
|
<parameter name="usedrift" condition="string">yes</parameter>
|
|
<parameter name="walkers" condition="int">4</parameter>
|
|
<parameter name="warmup_steps" condition="int">100</parameter>
|
|
<parameter name="warmupsteps" condition="int">100</parameter>
|
|
DumpConfig==false Nothing (configurations, state) will be saved.
|
|
Walker Samples are dumped every 24984960 steps.
|
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</vmc>
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|
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TraceManager::put() 1
|
|
traces requested : 0
|
|
method allows traces : 1
|
|
traces available : 0
|
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|
|
Adding a default LocalEnergyEstimator for the MainEstimator
|
|
CloneManager::makeClones makes 4 clones for W/Psi/H.
|
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Cloning methods for both Psi and H are used
|
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Initial partition of walkers 0 1 2 3 4
|
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PbyP moves with drift, using VMCUpdatePbyPWithDriftFast
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|
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Total Sample Size =0
|
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Walker distribution on root = 0 1 2 3 4
|
|
====================================================
|
|
SimpleFixedNodeBranch::finalize after a VMC block
|
|
QMC counter = 0
|
|
time step = 0.3
|
|
reference energy = -1.41939
|
|
reference variance = 0.163908
|
|
====================================================
|
|
QMC Execution time = 1.3775958011e+03 secs
|
|
Total Execution time = 1.3775966408e+03 secs
|
|
|
|
=========================================================
|
|
A new xml input file : qmc.s000.cont.xml
|