English

Electron-hole collision-limited resistance of gapped graphene

Mesoscale and Nanoscale Physics 2024-11-22 v1

Abstract

Collisions between electrons and holes can dominate the carrier scattering in clean graphene samples in the vicinity of charge neutrality point. While electron-hole limited resistance in pristine gapless graphene is well-studied, its evolution with induction of band gap EgE_g is less explored. Here, we derive the functional dependence of electron-hole limited resistance of gapped graphene ρeh\rho_{eh} on the ratio of gap and thermal energy Eg/kTE_g/kT. At low temperatures and large band gaps, the resistance grows linearly with Eg/kTE_g/kT, and possesses a minimum at Eg2.5kTE_g \approx 2.5 kT. This contrast to the Arrhenius activation-type behaviour for intrinsic semiconductors. Introduction of impurities restores the Arrhenius law for resistivity at low temperatures and/or high doping densities. The hallmark of electron-hole collision effects in graphene resistivity at charge neutrality is the crossover between exponential and power-law resistivity scalings with temperature.

Keywords

Cite

@article{arxiv.2312.05066,
  title  = {Electron-hole collision-limited resistance of gapped graphene},
  author = {Arseny Gribachov and Vladimir Vyurkov and Dmitry Svintsov},
  journal= {arXiv preprint arXiv:2312.05066},
  year   = {2024}
}