English

Charge and spin conductivity of a two-dimensional electron gas with random Rashba interaction

Mesoscale and Nanoscale Physics 2018-06-27 v1

Abstract

We calculate the transport relaxation time τtr\tau _{\rm tr} and spin transport relaxation time τs,tr\tau _{s,{\rm tr}} for a two-dimensional electron gas with spatially fluctuating Rashba spin-orbit interaction. These relaxation times determine the electrical and spin conductivity of the two-dimensional system, respectively. It is shown that the transport relaxation time τtr\tau _{\rm tr} is a nonmonotonic function of electron energy ε\varepsilon , whereas the spin transport relaxation time τs,tr\tau _{s,{\rm tr}} decreases with increasing ε\varepsilon , similarly to the conventional electron relaxation time τ\tau that characterizes the decay of an electron state corresponding to certain values of the momentum and spin. Such a behavior of the relaxation times leads to unusual temperature dependence of the electrical and spin conductivity.

Keywords

Cite

@article{arxiv.1804.05353,
  title  = {Charge and spin conductivity of a two-dimensional electron gas with random Rashba interaction},
  author = {S. Kudla and A. Dyrdal and V. K. Dugaev and E. Ya. Sherman and J. Barnas},
  journal= {arXiv preprint arXiv:1804.05353},
  year   = {2018}
}

Comments

7 pages, 4 figures