Dear VASP experts:
As we know the first order energy correction for charged supercell by VASP is referred to the Makov-Payne correction[reference 51 in the related topic in VASP manual] that in the original paper is only for cubic system by the formula:
e^2*q^2*alpha/L/epsilon
Does VASP generalize this first order correction to be suitable for orthorhombic supercell? This point is not stated explicitly in the VASP manual, so I want to make sure.
I tried to compere the correction calculated by VASP for charged supercells with only the length in z direction changes, such as 3x3x2 to 3x3x3 to 3x3x4. I find the absolute value of first order energy correction in OUTCAR is decreasing, which makes me think whether VASP is using a more general method than Makov-Payne correction for the first order correction that can be used to tetragonal or orthorhombic supercell.
Thanks.
about monopole correction
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about monopole correction
Last edited by crazyweed on Fri Dec 14, 2007 4:17 pm, edited 1 time in total.
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about monopole correction
Yes, VASP's Makov-Payne corrections work for any cell whose lattice vectors are orthogonal - not just cubic systems, despite what the guide says.
See http://cst-www.nrl.navy.mil/~erwin/vasptips/#dip_quad
See http://cst-www.nrl.navy.mil/~erwin/vasptips/#dip_quad
Last edited by scerwin on Fri Dec 21, 2007 2:16 pm, edited 1 time in total.
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about monopole correction
hi, scerwin,
Thanks for you reply. But I would like to know how VASP generalizes it to be suitable for orthorhombic lattice system, and what the references are, as the original Makov_Payne reference listed on the vasp manual is only for cubic.
Thanks for you reply. But I would like to know how VASP generalizes it to be suitable for orthorhombic lattice system, and what the references are, as the original Makov_Payne reference listed on the vasp manual is only for cubic.
Last edited by crazyweed on Mon Dec 24, 2007 2:35 am, edited 1 time in total.