[Wien] Metal or semimetal
delamora
delamora at unam.mx
Tue Jan 29 19:43:52 CET 2019
I strongly disagree
Wikipedia gives a very different definition
https://en.wikipedia.org/wiki/Semimetal
Bi would be a good example; it has a very low DOS at Ef (with the wikipedia definition of semimetal)
Graphite is conductor in the ab plane and a poor conductor (not insulating) in the c direction
As I said, the bands are flat near the band edge, so it would be a bad conductor (does this fall into the definition of semimetal???)
Flat bands give high DOS? Not always, for example NaCl at the bottom of the conduction band, the band is flat and DOS is very low
And I do not think I need a high density of k points
On the other hand the f orbitals have flat bands and DO HAVE high DOS
________________________________
De: Wien <wien-bounces at zeus.theochem.tuwien.ac.at> en nombre de Fecher, Gerhard <fecher at uni-mainz.de>
Enviado: martes, 29 de enero de 2019 03:49 a. m.
Para: A Mailing list for WIEN2k users
Asunto: Re: [Wien] Metal or semimetal
I strongly disagree,
a semi-metal (not to be confused with a half-metall) is a material that is insulating (semiconducting) in one direction and conducting in another one, a typical example is graphite.
(this has nothing to do whether the bands are flat or not;
and just to mention, the density of states is HIGH when the bands are FLAT.)
The question is: What is slightly below ?
If you have one (or more) partially filled band(s) that is(are) crossing the Fermi energy, then you have a metal.
(You find the occupation of the bands e.g.: in case.scf2)
If you have not enough k-points (or some other bad conditions), then the integration of the density of states might be bad
and the Fermi energy may fall into the valence or conduction band (probably few meV or less) even though the material is an insulator,
this can be healed in most cases by increasing the number of k-points.
In some cases you have to check whether there might be an overlapp of the valence and and conduction bands at different k-points, resulting in a semimetallic or zero-bandgap type behavior.
For example you may have a large gap at Gamma with EF at the top of the valence band and a large gap at another k-point, say X, with EF at the bottom of the conduction band.
PS.: To complete; in a half-metal one spin channel (e.g. minority) is insulating (semiconducting) and the other spin channel is metallic (e.g.: majority)
Ciao
Gerhard
DEEP THOUGHT in D. Adams; Hitchhikers Guide to the Galaxy:
"I think the problem, to be quite honest with you,
is that you have never actually known what the question is."
====================================
Dr. Gerhard H. Fecher
Institut of Inorganic and Analytical Chemistry
Johannes Gutenberg - University
55099 Mainz
and
Max Planck Institute for Chemical Physics of Solids
01187 Dresden
________________________________________
Von: Wien [wien-bounces at zeus.theochem.tuwien.ac.at] im Auftrag von delamora [delamora at unam.mx]
Gesendet: Freitag, 25. Januar 2019 01:53
An: A Mailing list for WIEN2k users
Betreff: Re: [Wien] Metal or semimetal
If Ef is near the edge of a band, close to the bandgap then it would be a bad conductor, since the bands would be quite flat (and the velocity of the electrons is proportional to the slope of the band) and the DOS would be low, so I would call it a semimetal
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Dear wien2k users:
I have a question that does not have any relation with wien2k but I would be grateful if you can answer me or send me a document:
When the fermi level passes slightly below the top of the valance band with the presence of a wide gap, this indicates a metal or semimetalic behavior.?
Thank you in advance
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