Impurity cyclotron resonance of anomalous Dirac electrons in graphene

  • Kim, S. C.; 
  • Yang, S-R Eric; 
  • MacDonald, A. H.
Citations

WEB OF SCIENCE

5
Citations

SCOPUS

7

초록

We have investigated a new feature of impurity cyclotron resonances common to various localized potentials of graphene. A localized potential can interact with a magnetic field in an unexpected way in graphene. It can lead to formation of anomalous boundstates that have a sharp peak with a width R in the probability density inside the potential and a broad peak of size magnetic length l outside the potential. We investigate optical matrix elements of anomalous states and find that they are unusually small and depend sensitively on the magnetic field. The effect of many-body interactions on their optical conductivity is investigated using a self-consistent time-dependent Hartree-Fock approach. For a completely filled Landau level we find that an excited electron-hole pair, originating from the optical transition between two anomalous impurity states, is nearly uncorrelated with other electron-hole pairs, although it displays substantial exchange self-energy effects. This absence of correlation is a consequence of a small vertex correction in comparison to the difference between renormalized transition energies computed within the one electron-hole pair approximation. However, an excited electron-hole pair originating from the optical transition between a normal and an anomalous impurity state can be substantially correlated with other electron-hole states with a significant optical strength.

키워드

cyclotron resonance; graphene; optical conductivity; HARTREE-FOCK; GAS; SPECTROSCOPY; EXCITATIONS; LEVEL
제목
Impurity cyclotron resonance of anomalous Dirac electrons in graphene
저자
Kim, S. C.; Yang, S-R Eric; MacDonald, A. H.
DOI
10.1088/0953-8984/26/32/325302
발행일
2014-08-13
유형
Article
저널명
Journal of Physics: Condensed Matter
권
26
호
32