Lattice density-functional theory on graphene


Autoria(s): Ijäs, M.; Harju, A.
Contribuinte(s)

University of Helsinki, Helsinki Institute of Physics

University of Helsinki, Helsinki Institute of Physics

Data(s)

2010

Resumo

A density-functional approach on the hexagonal graphene lattice is developed using an exact numerical solution to the Hubbard model as the reference system. Both nearest-neighbour and up to third nearest-neighbour hoppings are considered and exchange-correlation potentials within the local density approximation are parameterized for both variants. The method is used to calculate the ground-state energy and density of graphene flakes and infinite graphene sheet. The results are found to agree with exact diagonalization for small systems, also if local impurities are present. In addition, correct ground-state spin is found in the case of large triangular and bowtie flakes out of the scope of exact diagonalization methods.

Formato

8

Identificador

http://hdl.handle.net/10138/24419

1098-0121

Idioma(s)

eng

Publicador

American Physical Society through the American Institute of Physics

Relação

Physical Review B, Condensed Matter and Materials Physics

Fonte

Ijäs , M & Harju , A 2010 , ' Lattice density-functional theory on graphene ' Physical Review B, Condensed Matter and Materials Physics , vol 82 , no. 23 , pp. 235111 . , 10.1103/PhysRevB.82.235111

Palavras-Chave #cond-mat.mes-hall #114 Physical sciences
Tipo

A1 Refereed journal article

info:eu-repo/semantics/article