quantum-espresso/tests/lattice-ibrav2-kauto.ref

194 lines
7.3 KiB
Plaintext

Program PWSCF v.4.1a starts ...
Today is 11Jul2009 at 9:30:34
For Norm-Conserving or Ultrasoft (Vanderbilt) Pseudopotentials or PAW
Current dimensions of program pwscf are:
Max number of different atomic species (ntypx) = 10
Max number of k-points (npk) = 40000
Max angular momentum in pseudopotentials (lmaxx) = 3
Waiting for input...
file H.pz-vbc.UPF: wavefunction(s) 1S renormalized
bravais-lattice index = 2
lattice parameter (a_0) = 10.0000 a.u.
unit-cell volume = 250.0000 (a.u.)^3
number of atoms/cell = 2
number of atomic types = 1
number of electrons = 2.00
number of Kohn-Sham states= 1
kinetic-energy cutoff = 25.0000 Ry
charge density cutoff = 100.0000 Ry
convergence threshold = 1.0E-06
mixing beta = 0.7000
number of iterations used = 8 plain mixing
Exchange-correlation = SLA PZ NOGX NOGC (1100)
celldm(1)= 10.000000 celldm(2)= 0.000000 celldm(3)= 0.000000
celldm(4)= 0.000000 celldm(5)= 0.000000 celldm(6)= 0.000000
crystal axes: (cart. coord. in units of a_0)
a(1) = ( -0.500000 0.000000 0.500000 )
a(2) = ( 0.000000 0.500000 0.500000 )
a(3) = ( -0.500000 0.500000 0.000000 )
reciprocal axes: (cart. coord. in units 2 pi/a_0)
b(1) = ( -1.000000 -1.000000 1.000000 )
b(2) = ( 1.000000 1.000000 1.000000 )
b(3) = ( -1.000000 1.000000 -1.000000 )
PseudoPot. # 1 for H read from file H.pz-vbc.UPF
Pseudo is Norm-conserving, Zval = 1.0
Generated by new atomic code, or converted to UPF format
Using radial grid of 131 points, 0 beta functions with:
atomic species valence mass pseudopotential
H 1.00 1.00080 H ( 1.00)
16 Sym.Ops. (with inversion)
Cartesian axes
site n. atom positions (a_0 units)
1 H tau( 1) = ( 0.0000000 0.0000000 -0.0661404 )
2 H tau( 2) = ( 0.0000000 0.0000000 0.0661404 )
number of k points= 3
cart. coord. in units 2pi/a_0
k( 1) = ( -0.2500000 0.2500000 0.2500000), wk = 0.5000000
k( 2) = ( 0.2500000 -0.2500000 0.7500000), wk = 0.5000000
k( 3) = ( -0.2500000 0.7500000 0.2500000), wk = 1.0000000
G cutoff = 253.3030 ( 4279 G-vectors) FFT grid: ( 24, 24, 24)
Largest allocated arrays est. size (Mb) dimensions
Kohn-Sham Wavefunctions 0.01 Mb ( 531, 1)
NL pseudopotentials 0.00 Mb ( 531, 0)
Each V/rho on FFT grid 0.21 Mb ( 13824)
Each G-vector array 0.03 Mb ( 4279)
G-vector shells 0.00 Mb ( 86)
Largest temporary arrays est. size (Mb) dimensions
Auxiliary wavefunctions 0.03 Mb ( 531, 4)
Each subspace H/S matrix 0.00 Mb ( 4, 4)
Each <psi_i|beta_j> matrix 0.00 Mb ( 0, 1)
Arrays for rho mixing 1.69 Mb ( 13824, 8)
Initial potential from superposition of free atoms
starting charge 1.99995, renormalised to 2.00000
Starting wfc are 2 atomic wfcs
total cpu time spent up to now is 0.03 secs
per-process dynamical memory: 2.1 Mb
Self-consistent Calculation
iteration # 1 ecut= 25.00 Ry beta=0.70
Davidson diagonalization with overlap
ethr = 1.00E-02, avg # of iterations = 2.0
total cpu time spent up to now is 0.04 secs
total energy = -2.22350932 Ry
Harris-Foulkes estimate = -2.28847301 Ry
estimated scf accuracy < 0.12759604 Ry
iteration # 2 ecut= 25.00 Ry beta=0.70
Davidson diagonalization with overlap
ethr = 6.38E-03, avg # of iterations = 1.3
total cpu time spent up to now is 0.05 secs
total energy = -2.23381273 Ry
Harris-Foulkes estimate = -2.23422599 Ry
estimated scf accuracy < 0.00097862 Ry
iteration # 3 ecut= 25.00 Ry beta=0.70
Davidson diagonalization with overlap
ethr = 4.89E-05, avg # of iterations = 2.0
total cpu time spent up to now is 0.06 secs
total energy = -2.23402521 Ry
Harris-Foulkes estimate = -2.23402526 Ry
estimated scf accuracy < 0.00000942 Ry
iteration # 4 ecut= 25.00 Ry beta=0.70
Davidson diagonalization with overlap
ethr = 4.71E-07, avg # of iterations = 2.0
52 2.000000 -2.000000 -2.000000 0.172437E-02 -0.220554E-18
53 2.000000 2.000000 -2.000000 0.172437E-02 -0.481574E-19
54 -2.000000 -2.000000 -2.000000 0.172437E-02 -0.802799E-19
55 2.000000 -2.000000 2.000000 0.172437E-02 -0.642490E-19
56 -2.000000 2.000000 -2.000000 0.172437E-02 0.128498E-18
57 2.000000 2.000000 2.000000 0.172437E-02 0.144498E-18
58 -2.000000 -2.000000 2.000000 0.172437E-02 0.167087E-18
59 -2.000000 2.000000 2.000000 0.172437E-02 0.351336E-18
total cpu time spent up to now is 0.07 secs
End of self-consistent calculation
k =-0.2500 0.2500 0.2500 ( 531 PWs) bands (ev):
-9.7928
k = 0.2500-0.2500 0.7500 ( 529 PWs) bands (ev):
-9.3068
k =-0.2500 0.7500 0.2500 ( 529 PWs) bands (ev):
-9.3386
! total energy = -2.23402650 Ry
Harris-Foulkes estimate = -2.23402697 Ry
estimated scf accuracy < 0.00000091 Ry
The total energy is the sum of the following terms:
one-electron contribution = -1.58238592 Ry
hartree contribution = 0.95561035 Ry
xc contribution = -1.31407164 Ry
ewald contribution = -0.29317930 Ry
convergence has been achieved in 4 iterations
Writing output data file pwscf.save
PWSCF : 0.12s CPU time, 0.14s wall time
init_run : 0.01s CPU
electrons : 0.04s CPU
Called by init_run:
wfcinit : 0.00s CPU
potinit : 0.00s CPU
Called by electrons:
c_bands : 0.02s CPU ( 4 calls, 0.004 s avg)
sum_band : 0.01s CPU ( 4 calls, 0.002 s avg)
v_of_rho : 0.01s CPU ( 5 calls, 0.002 s avg)
mix_rho : 0.00s CPU ( 4 calls, 0.001 s avg)
Called by c_bands:
cegterg : 0.02s CPU ( 12 calls, 0.001 s avg)
Called by *egterg:
h_psi : 0.01s CPU ( 37 calls, 0.000 s avg)
g_psi : 0.00s CPU ( 22 calls, 0.000 s avg)
cdiaghg : 0.00s CPU ( 34 calls, 0.000 s avg)
Called by h_psi:
General routines
cft3 : 0.00s CPU ( 15 calls, 0.000 s avg)
cft3s : 0.01s CPU ( 92 calls, 0.000 s avg)
davcio : 0.00s CPU ( 39 calls, 0.000 s avg)