Dear Wannier Users,<br>
<br>
I am simulating a system composed of transition metals and oxygen. <br>
The SCF and NSCF calculations finish sucessfully. However in transfering <br>
the results to wannier, I receive an error message, which apparently comes from the<br>
nnkp file. The compuational steps and the input files are given below. <br>
<br>
Any help is appreciated.<br>
Regards,<br>
Masoud <br>
<br>
===================================<br>
1) pw.x < Ti9WO20.scf > Ti9WO20.scf.out <br>
- no error<br>
2) pw.x < Ti9WO20.nscf > Ti9WO20.nscf.out<br>
- no error<br>
3) wannier90.x -pp Ti9WO20<br>
- no error<br>
4) pw2wannier90.x < Ti9WO20.pw2wan<br>
- Error:<br>
Wannier mode is: standalone<br>
-----------------<br>
*** Reading nnkp<br>
-----------------<br>
Checking info from wannier.nnkp file<br>
Something wrong!<br>
rlatt(i,j) =
14.8645417730346
at(i,j)= 14.8645406842150<br>
<br>
============================Input file Ti9WO20.scf<br>
&control<br>
calculation='scf',<br>
restart_mode= 'from_scratch',<br>
prefix='Ti9WO20' ,<br>
pseudo_dir = '../pseudo/',<br>
outdir='../tmp/'<br>
disk_io = 'high'<br>
/<br>
&system<br>
ibrav= 0, <br>
celldm(1)= 1.88972598857892,<br>
nat= 30, ntyp= 3, nbnd = 140<br>
ecutwfc =30<br>
/<br>
&electrons<br>
diagonalization = 'david'<br>
mixing_mode = 'plain'<br>
conv_thr = 1.0d-6<br>
mixing_beta = 0.4<br>
/<br>
<br>
CELL_PARAMETERS cubic<br>
4.67949806203093 0.01748694030527 0.0<br>
0.01748694030527 4.67949806203093 0.0<br>
0.0
0.0 14.86454068421497<br>
<br>
ATOMIC_SPECIES<br>
Ti 47.88 Ti.pw91-nsp-van.UPF<br>
O 15.9994 O.pw91-van_ak.UPF<br>
W 183.85 W.pw91-nsp-van.UPF<br>
<br>
ATOMIC_POSITIONS angstrom<br>
Ti 0.000000000 0.000000000 14.834375870 <br>
...<br>
W 2.348492501 2.348492501 4.459151146<br>
<br>
K_POINTS crystal<br>
64<br>
0.00000000 0.00000000 0.00000000 1.562500e-02<br>
...<br>
0.75000000 0.75000000 0.75000000 1.562500e-02<br>
<br>
============================Input file Ti9WO20.nscf<br>
<br>
&control<br>
calculation='nscf',<br>
!restart_mode= 'from_scratch',<br>
prefix='Ti9WO20' ,<br>
pseudo_dir = '../pseudo/',<br>
outdir='../tmp/'<br>
disk_io = 'high'<br>
/<br>
&system<br>
ibrav= 0, <br>
celldm(1)= 1.88972598857892,<br>
nat= 30, ntyp= 3, nbnd = 140<br>
ecutwfc =30<br>
/<br>
&electrons<br>
diagonalization = 'david'<br>
mixing_mode = 'plain'<br>
conv_thr = 1.0d-7<br>
mixing_beta = 0.4<br>
/<br>
<br>
CELL_PARAMETERS cubic<br>
4.67949806203093 0.01748694030527 0.0<br>
0.01748694030527 4.67949806203093 0.0<br>
0.0
0.0 14.86454068421497<br>
<br>
ATOMIC_SPECIES<br>
Ti 47.88 Ti.pw91-nsp-van.UPF<br>
O 15.9994 O.pw91-van_ak.UPF<br>
W 183.85 W.pw91-nsp-van.UPF<br>
<br>
ATOMIC_POSITIONS angstrom<br>
Ti 0.000000000 0.000000000 14.834375870 <br>
...<br>
W 2.348492501 2.348492501 4.459151146<br>
<br>
K_POINTS crystal<br>
64<br>
0.00000000 0.00000000 0.00000000 1.562500e-02<br>
...<br>
0.75000000 0.75000000 0.75000000 1.562500e-02<br>
<br>
======================== Input file Ti9WO20.pw2wan<br>
&inputpp <br>
outdir = '../tmp/'<br>
prefix = 'Ti9WO20'<br>
seedname = 'Ti9WO20'<br>
spin_component = 'none'<br>
write_mmn = .true.<br>
write_amn = .true.<br>
write_unk = .true.<br>
wan_mode = 'standalone'<br>
/<br>
<br>