Electron energy level statistics in graphene quantum dots
Abstract
Motivated by recent experimental observations of size quantization of electron energy levels in graphene quantum dots [7] we investigate the level statistics in the simplest tight-binding model for different dot shapes by computer simulation. The results are in a reasonable agreement with the experiment which confirms qualitatively interpretation of observed level statistics in terms of "Dirac billiards" without taking into account many-body effects. It is shown that edge effects are in general sufficient to produce the observed level distribution and that even strong bulk disorder does not change the results drastically.
- Publication:
-
Soviet Journal of Experimental and Theoretical Physics Letters
- Pub Date:
- January 2008
- DOI:
- 10.1134/S0021364008210133
- arXiv:
- arXiv:0804.2758
- Bibcode:
- 2008JETPL..88..607D
- Keywords:
-
- 05.45.Mt;
- 73.22.Dj;
- 81.05.Uw;
- 05.45.Mt;
- 73.22.Dj;
- 81.05.Uw;
- Quantum chaos;
- semiclassical methods;
- Single particle states;
- Carbon diamond graphite;
- Condensed Matter - Mesoscale and Nanoscale Physics
- E-Print:
- Published: Pis'ma v ZhETF, vol. 88, iss. 9, pp. 698 -- 701 (2008)