Number of PAW one-center entries in CHGCAR
Posted: Tue Jul 09, 2024 1:46 pm
Dear Admin and VASP users,
I am trying to interpret the one-center terms in CHGCAR.
These terms should represent Eq.7 of PhysRevB 59, 1758:
rho_ij = sum_n f_n <psi_n|p_i> <p_j|psi_n>
Thus, for element with a total of n lm-decomposed projectors, there should be n(n+1)/2 entries.
However, this is not the case.
For elements with 2s + 2p projectors such as O, n = 2*1 + 2*3 = 8, so I am expecting 8*9/2 = 36 entries while there are only 33 in CHGCAR.
Likely, for elements with 2s + 2p + 1d (such as Mg) or 2s + 2p + 2d (such as Zn), I am expecting 13*14/2 = 91 and 18*19/2 = 171 entries instead of 78 and 138 in CHGCAR, respectively.
The same also goes to augmentation part in POT file.
I am wondering what I am missing. Any help is appreciated.
Best regards,
YZ
I am trying to interpret the one-center terms in CHGCAR.
These terms should represent Eq.7 of PhysRevB 59, 1758:
rho_ij = sum_n f_n <psi_n|p_i> <p_j|psi_n>
Thus, for element with a total of n lm-decomposed projectors, there should be n(n+1)/2 entries.
However, this is not the case.
For elements with 2s + 2p projectors such as O, n = 2*1 + 2*3 = 8, so I am expecting 8*9/2 = 36 entries while there are only 33 in CHGCAR.
Likely, for elements with 2s + 2p + 1d (such as Mg) or 2s + 2p + 2d (such as Zn), I am expecting 13*14/2 = 91 and 18*19/2 = 171 entries instead of 78 and 138 in CHGCAR, respectively.
The same also goes to augmentation part in POT file.
I am wondering what I am missing. Any help is appreciated.
Best regards,
YZ