Article ID Journal Published Year Pages File Type
1593652 Solid State Communications 2009 5 Pages PDF
Abstract
The full-potential linearized augmented-plane wave (FP-LAPW) method is employed in calculations of the band structure and Fermi surfaces of the superconductive A15 (Cr3O-type) compounds V 3B and Nb3B, B=Ga, Ge and Sn. A plot of the total density of states shows a minimum above EF in all studied compounds separating bonding bands from antibonding bands. The V compounds possess higher densities of states at EF, whereas narrower bandwidths are observed for the Nb compounds. From the results it is inferred that the higher transition temperature Tc experimentally observed for the Nb compounds arises from larger volumes of the Fermi surfaces for electron sheets besides the multi-Fermi-surface structure.
Related Topics
Physical Sciences and Engineering Materials Science Materials Science (General)
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