Eigenvalue shifting - alpha+bet term
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Eigenvalue shifting - alpha+bet term
Hi there,
I typically adjust my Fermi level according to the vacuum level of the electrostatic potential to get my work function and also to place DOS plots on an 'absolute' scale.
Recently I was recommended to use the alpha+bet value which is listed with the E-fermi instead.
Is this approach sound? And how is the alpha+bet value derived? I tried looking at the documentation and workshop pdf's but have not found where this is explained.
Thanks,
Chris
I typically adjust my Fermi level according to the vacuum level of the electrostatic potential to get my work function and also to place DOS plots on an 'absolute' scale.
Recently I was recommended to use the alpha+bet value which is listed with the E-fermi instead.
Is this approach sound? And how is the alpha+bet value derived? I tried looking at the documentation and workshop pdf's but have not found where this is explained.
Thanks,
Chris
Last edited by cdt9f on Fri Aug 26, 2005 7:18 pm, edited 1 time in total.
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Eigenvalue shifting - alpha+bet term
You need to determine the vacuum potential to find the absolute meaning of the eigenvalues!
Adding alpha+beta is not very accurate and gives the correct answer only in the limit of very large supercells.
In any case the absolute value of the eigenvalues can be determined only if your cell contains sufficient vacuum. For a slab, the energy difference between the topost eigenvalue (Fermi-level) and the vacuum potential, corresponds to the workfunction (for bulk calculation the absolute eigenvalues are in principle not well defined).
To get the vacuum potential, you need to write the LOCPOT file and you need to inspect it visually (at positions that are far from the slab).
The program vtotav.f might aid this. It averages the LOCPOT file along specified planes.
Adding alpha+beta is not very accurate and gives the correct answer only in the limit of very large supercells.
In any case the absolute value of the eigenvalues can be determined only if your cell contains sufficient vacuum. For a slab, the energy difference between the topost eigenvalue (Fermi-level) and the vacuum potential, corresponds to the workfunction (for bulk calculation the absolute eigenvalues are in principle not well defined).
To get the vacuum potential, you need to write the LOCPOT file and you need to inspect it visually (at positions that are far from the slab).
The program vtotav.f might aid this. It averages the LOCPOT file along specified planes.
Last edited by admin on Tue Aug 30, 2005 3:25 pm, edited 1 time in total.
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Eigenvalue shifting - alpha+bet term
OK, I have used the procedure you suggest for some time. However, to resolve some controversy with colleagues, I would still like to know what alpha+beta means.
Chris
Chris
Last edited by cdt9f on Wed Aug 31, 2005 2:19 am, edited 1 time in total.
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Eigenvalue shifting - alpha+bet term
[quote="cdt9f"] I would still like to know what alpha+beta means.[/quote]
I'm curious about this too. Is it related the ionization potentials of the isolated atoms?
I'm curious about this too. Is it related the ionization potentials of the isolated atoms?
Last edited by aron on Fri Sep 28, 2007 2:13 pm, edited 1 time in total.
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Eigenvalue shifting - alpha+bet term
"I would still like to know what alpha+beta means."
This question needs to be answered. If anybody has any info please advise. Thanks
Best Regards
modey3
This question needs to be answered. If anybody has any info please advise. Thanks
Best Regards
modey3
Last edited by Modey3 on Wed Jul 22, 2009 9:31 pm, edited 1 time in total.
Eigenvalue shifting - alpha+bet term
oh, thats a terrible work. If I do relaxed scan where I have arround 100 different geometries it's almost impossible to write LOCPOT, look inside, find appropriate point in space, note the potential value and substract it manually for each of 100 geometries ( I really need something which can be automated (by script or program).
Last edited by asija on Wed Jul 14, 2010 11:16 am, edited 1 time in total.