Artigo Acesso aberto

Polarization charge distribution in gapped graphene: Perturbation theory and exact diagonalization analysis

2008; American Physical Society; Volume: 78; Issue: 7 Linguagem: Inglês

10.1103/physrevb.78.075433

ISSN

1550-235X

Autores

Valeri N. Kotov, Vitor M. Pereira, Bruno Uchoa,

Tópico(s)

Topological Materials and Phenomena

Resumo

We study the distribution of vacuum polarization charge induced by a Coulomb impurity in massive graphene. By analytically computing the polarization function, we show that the charge density is distributed in space in a nontrivial fashion and on a characteristic length-scale set by the effective Compton wavelength. The density crosses over from a logarithmic behavior below this scale to a power-law variation above it. Our results in the continuum limit are confirmed by explicit diagonalization of the corresponding tight-binding model on a finite-size lattice. Electron-electron interaction effects are also discussed.

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