English

Competition between excitonic gap generation and disorder scattering in graphene

Strongly Correlated Electrons 2011-03-21 v4 Mesoscale and Nanoscale Physics

Abstract

We study the disorder effect on the excitonic gap generation caused by strong Coulomb interaction in graphene. By solving the self-consistently coupled equations of dynamical fermion gap mm and disorder scattering rate Γ\Gamma, we found a critical line on the plane of interaction strength λ\lambda and disorder strength gg. The phase diagram is divided into two regions: in the region with large λ\lambda and small gg, m0m \neq 0 and Γ=0\Gamma = 0; in the other region, m=0m = 0 and Γ0\Gamma \neq 0 for nonzero gg. In particular, there is no coexistence of finite fermion gap and finite scattering rate. These results imply a strong competition between excitonic gap generation and disorder scattering. This conclusion does not change when an additional contact four-fermion interaction is included. For sufficiently large λ\lambda, the growing disorder may drive a quantum phase transition from an excitonic insulator to a metal.

Cite

@article{arxiv.1007.4538,
  title  = {Competition between excitonic gap generation and disorder scattering in graphene},
  author = {Guo-Zhu Liu and Jing-Rong Wang},
  journal= {arXiv preprint arXiv:1007.4538},
  year   = {2011}
}

Comments

8 pages, 1 figure

R2 v1 2026-06-21T15:53:12.828Z