Dear Bin,
I am not an expert at all in applying lattice charges, but I do note a couple of things:
1) your UHF in Molpro did not converge, so it's not a valid comparison
2) the nuclear repulsion energy is the same between NWChem and Molpro, so the lattice charges do seem to be identical in the two programs
Have you tried comparing UHF energies for this input without the lattice charges? I note that NWChem complains a bit about the local part of the ECP on Eu. If you could post a simpler input that exhibits problems it would also be helpful to debug.
regards,
-Kirk
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Can you try a simpler example without an ECP center? Perhaps just Ar atom?
regards,
-Kirk
From:
Bin Han <ice86...@gmail.com>
Date: Saturday, March 12, 2022 at 6:39 PM
To: Peterson, Kirk <kipe...@wsu.edu>
Cc: molpro-user <molpr...@googlegroups.com>
Subject: Re: [molpro-user] Setting point charge field in molpro
Dear Kirk,
Thanks for your reply. I add a shift in UHF calculation and I get the converged result:
!UHF STATE 1.1 Energy -711.336479663842
UHF One-electron energy -1233.376651724358
UHF Two-electron energy 528.108465116586
UHF Kinetic energy 352.754911802277
UHF Nuclear energy -6.068293056071
UHF Virial quotient -2.016517575984
The result still differs from the result in nwchem. If we check the results carefully, we can find that in nwchem the two-electron energy with point charge changes very small comparing with the result without point charge, but in molpro, we can find that the two-electron and one-electron energy all change very large with the result without point charge. So I guess there may be some difference dealing with these two energies in the two programs. In nwchem, I find an example in the manual:

and in molpro, the introduction about "LATTICE":

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I'm hoping someone who is more familiar with this part of the code can address this.
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