Bader charges not converged with increasing NGX(/Y/Z)F grid
Posted: Thu Jan 21, 2016 8:25 am
Dear all,
I have built a CeO2(111) 3x3x9 surface with 27 Ce atoms and 54 O atoms and a 15-Angstrom vaccuum, and got the total charges of Ce atoms and O atoms with respect to NGXF as follows (|e| means number of charges):
NGFX 154 179 205 230 256
|e| of Ce atoms 62.36 61.44 60.41 61.21 62.06
|e| of O atoms -62.36 -61.44 -60.41 -61.21 -62.06
Obviously, charges were not converged with respect to increasing NGXF grid. How do we handle this problem? Replies are greatly appreciated.
VASP settings are as follows:
1. Parameters in the INCAR file
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ENCUT = 500.00 eV
PREC = Normal
LREAL = Auto
EDIFF = 1E-5
NSW = 0
IBRION = 2
ISIF = 2
ISMEAR = 0
SIGMA = 0.05
ISPIN = 2
# FFT grid
NGXF = 154
NGYF = 154
NGZF = 307
# DFT+U settings
LDAU = .TRUE. # switch on the +U corrections
LDAUTYPE = 2 # Dudarev's approach
LDAUL = -1 3 # -1 no U; 1 U to p electrons; 2 d and 3 f.
LDAUU = 0.0 4.5 # U values
LDAUJ = 0.0 0.0 # do not specify them for Dudarev's approach
# dipole corrections
IDIPOL = 3
LCORR = .TRUE.
# output controls
LAECHG = .TRUE.
LCHARG = .TRUE.
LWAVE = .FALSE.
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
2. A 3x3x1 k-point mesh was used. PAW potential files for Ce and O were used.
I have built a CeO2(111) 3x3x9 surface with 27 Ce atoms and 54 O atoms and a 15-Angstrom vaccuum, and got the total charges of Ce atoms and O atoms with respect to NGXF as follows (|e| means number of charges):
NGFX 154 179 205 230 256
|e| of Ce atoms 62.36 61.44 60.41 61.21 62.06
|e| of O atoms -62.36 -61.44 -60.41 -61.21 -62.06
Obviously, charges were not converged with respect to increasing NGXF grid. How do we handle this problem? Replies are greatly appreciated.
VASP settings are as follows:
1. Parameters in the INCAR file
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
ENCUT = 500.00 eV
PREC = Normal
LREAL = Auto
EDIFF = 1E-5
NSW = 0
IBRION = 2
ISIF = 2
ISMEAR = 0
SIGMA = 0.05
ISPIN = 2
# FFT grid
NGXF = 154
NGYF = 154
NGZF = 307
# DFT+U settings
LDAU = .TRUE. # switch on the +U corrections
LDAUTYPE = 2 # Dudarev's approach
LDAUL = -1 3 # -1 no U; 1 U to p electrons; 2 d and 3 f.
LDAUU = 0.0 4.5 # U values
LDAUJ = 0.0 0.0 # do not specify them for Dudarev's approach
# dipole corrections
IDIPOL = 3
LCORR = .TRUE.
# output controls
LAECHG = .TRUE.
LCHARG = .TRUE.
LWAVE = .FALSE.
~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
2. A 3x3x1 k-point mesh was used. PAW potential files for Ce and O were used.