Wrong(?) results in DYNMAT with IBRION = 8: Significant difference between IBRION = 6 and IBRION = 8
Posted: Thu Jan 21, 2010 7:56 pm
EDIT: This issue has been resolved. The output in the DYNMAT is scaled by a parameter STEP. For IBRION = 5,6 then STEP = POTIM, while for IBRION = 7,8 then STEP = 1. The frequency difference between IBRION = 6 and IBRION = 8 also goes away if the accuracy is increased for the IBRION = 6 case.
Dear admin and vasp-users,
I'm performing calculations to determine the vibrational frequencies of bulk bcc Fe. I set up a cell with 128 atoms and use IBRION = 8. VASP correctly identifies that only one degree of freedom needs to be evaluated, in this case the x-coordinate for the 1st atom. The obtained frequencies look reasonable and if I evaluate the phonon DOS I get something that resembles experimental results.
The problem I'm having is that if I look at the DYNMAT file the entry for the x-coordinate is extremely large and the displacement is indicated to be 1.00. Since the POTIM tag doesn't affect anything when using DFPT (I've checked to be absolutely sure) I must have missed something.
I've performed calculations using IBRION = 6 and POTIM = 0.005 in order to compare. A direct comparison between the two DYNMAT files would be dependent of the POTIM value for the IBRION = 6 case, but it seems to show that IBRION = 8 gives very large values in the DYNMAT file. I also found a large difference between the frequencies with almost 0.2 THz per degree of freedom, which is not good. I expected to see a reasonable agreement between the DFPT results and the IBRION = 6 results when POTIM tends to be small. So I'm starting to question if I can trust the results for IBRION = 8.
Do anyone has a suggestion to what might be going on here? Can I improve the IBRION = 8 calculations in some way?
I have verified that the geometry is correct and that I'm using the same POTCAR, KPOINTS and POSCAR for both runs. All calculations were performed with VASP 5.2.2.
Best regards,
/Dan Fors
DYNMAT (IBRION = :
===============
1 128 1
55.847
1 1 1.0000 0.0000 0.0000
-11.948513 0.000000 0.000000
-0.020332 0.000000 0.000841
0.020933 0.000000 0.000000
-0.020332 0.000000 -0.000841
-0.020332 0.000841 0.000000
-0.061039 0.000123 0.000123
...
DYNMAT (IBRION = 6):
===============
1 128 1
55.847
1 1 0.0050 0.0000 0.0000
-0.056924 0.000000 0.000000
-0.000259 0.000000 -0.000004
0.000504 0.000000 0.000000
-0.000259 0.000000 0.000004
-0.000259 -0.000004 0.000000
-0.000211 -0.000001 -0.000001
-0.000089 0.000000 0.000000
...
INCAR (IBRION = :
==============
SYSTEM = Fe128
ENCUT = 700 eV
ENAUG = 700 eV
EDIFF = 1E-8
EDIFFG = 1E-5
LREAL = A
PREC = Accurate
ADDGRID = .TRUE.
ISMEAR = 1
SIGMA = 0.1
IBRION = 8
MAGMOM = 128*4
ISPIN = 2
LORBIT = 12
NEDOS = 1000
ALGO = Fast
INCAR (IBRION = 6):
=============
SYSTEM = Fe128
ENCUT = 700 eV
ENAUG = 700 eV
EDIFF = 1E-8
EDIFFG = 1E-5
LREAL = A
PREC = Accurate
ADDGRID = .TRUE.
ISMEAR = 1
SIGMA = 0.1
IBRION = 6
POTIM = 0.005
MAGMOM = 128*4
ISPIN = 2
LORBIT = 12
NEDOS = 1000
ALGO = Fast
KPOINTS
======
Monk
0
Monk
4 4 4
0 0 0
POSCAR:
======
bcc:
2.83310000000000
4.0065391828051933 0.0000000000000000 0.0000000000000000
0.0000000000000000 4.0065391828051933 0.0000000000000000
0.0000000000000000 0.0000000000000000 4.0065391828051933
Fe
128
Direct
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<span class='smallblacktext'>[ Edited ]</span>
Dear admin and vasp-users,
I'm performing calculations to determine the vibrational frequencies of bulk bcc Fe. I set up a cell with 128 atoms and use IBRION = 8. VASP correctly identifies that only one degree of freedom needs to be evaluated, in this case the x-coordinate for the 1st atom. The obtained frequencies look reasonable and if I evaluate the phonon DOS I get something that resembles experimental results.
The problem I'm having is that if I look at the DYNMAT file the entry for the x-coordinate is extremely large and the displacement is indicated to be 1.00. Since the POTIM tag doesn't affect anything when using DFPT (I've checked to be absolutely sure) I must have missed something.
I've performed calculations using IBRION = 6 and POTIM = 0.005 in order to compare. A direct comparison between the two DYNMAT files would be dependent of the POTIM value for the IBRION = 6 case, but it seems to show that IBRION = 8 gives very large values in the DYNMAT file. I also found a large difference between the frequencies with almost 0.2 THz per degree of freedom, which is not good. I expected to see a reasonable agreement between the DFPT results and the IBRION = 6 results when POTIM tends to be small. So I'm starting to question if I can trust the results for IBRION = 8.
Do anyone has a suggestion to what might be going on here? Can I improve the IBRION = 8 calculations in some way?
I have verified that the geometry is correct and that I'm using the same POTCAR, KPOINTS and POSCAR for both runs. All calculations were performed with VASP 5.2.2.
Best regards,
/Dan Fors
DYNMAT (IBRION = :
===============
1 128 1
55.847
1 1 1.0000 0.0000 0.0000
-11.948513 0.000000 0.000000
-0.020332 0.000000 0.000841
0.020933 0.000000 0.000000
-0.020332 0.000000 -0.000841
-0.020332 0.000841 0.000000
-0.061039 0.000123 0.000123
...
DYNMAT (IBRION = 6):
===============
1 128 1
55.847
1 1 0.0050 0.0000 0.0000
-0.056924 0.000000 0.000000
-0.000259 0.000000 -0.000004
0.000504 0.000000 0.000000
-0.000259 0.000000 0.000004
-0.000259 -0.000004 0.000000
-0.000211 -0.000001 -0.000001
-0.000089 0.000000 0.000000
...
INCAR (IBRION = :
==============
SYSTEM = Fe128
ENCUT = 700 eV
ENAUG = 700 eV
EDIFF = 1E-8
EDIFFG = 1E-5
LREAL = A
PREC = Accurate
ADDGRID = .TRUE.
ISMEAR = 1
SIGMA = 0.1
IBRION = 8
MAGMOM = 128*4
ISPIN = 2
LORBIT = 12
NEDOS = 1000
ALGO = Fast
INCAR (IBRION = 6):
=============
SYSTEM = Fe128
ENCUT = 700 eV
ENAUG = 700 eV
EDIFF = 1E-8
EDIFFG = 1E-5
LREAL = A
PREC = Accurate
ADDGRID = .TRUE.
ISMEAR = 1
SIGMA = 0.1
IBRION = 6
POTIM = 0.005
MAGMOM = 128*4
ISPIN = 2
LORBIT = 12
NEDOS = 1000
ALGO = Fast
KPOINTS
======
Monk
0
Monk
4 4 4
0 0 0
POSCAR:
======
bcc:
2.83310000000000
4.0065391828051933 0.0000000000000000 0.0000000000000000
0.0000000000000000 4.0065391828051933 0.0000000000000000
0.0000000000000000 0.0000000000000000 4.0065391828051933
Fe
128
Direct
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<span class='smallblacktext'>[ Edited ]</span>