arXiv Analytics

Sign in

arXiv:1506.07556 [cond-mat.mes-hall]AbstractReferencesReviewsResources

Effects of anisotropy and disorder on the conductivity of Weyl semimetals

Ya. I. Rodionov, K. I. Kugel, Franco Nori

Published 2015-06-24Version 1

We study dc conductivity of a Weyl semimetal with uniaxial anisotropy (Fermi velocity ratio $\xi= v_\bot/v_\parallel\neq1$) considering the scattering of charge carriers by a wide class of impurity potentials, both short- and long-range. We obtain the ratio of transverse and longitudinal (with respect to the anisotropy axis) conductivities as a function of both $\xi$ and temperature. We find that the transverse and longitudinal conductivities exhibit different temperature dependence in the case of short-range disorder. For general long-range disorder, the temperature dependence ($\sim T^4$) of the conductivity turns out to be insensitive of the anisotropy in the limits of strong ($\xi\gg$ and $\ll1$) and weak ($\xi\approx1$) anisotropy.

Related articles: Most relevant | Search more
arXiv:0806.3900 [cond-mat.mes-hall] (Published 2008-06-24)
Temperature dependence of ambipolar diffusion in silicon-on-insulator
arXiv:cond-mat/0106112 (Published 2001-06-06)
Micro-SQUID technique for studying the temperature dependence of switching fields of single nanoparticles
arXiv:0912.1606 [cond-mat.mes-hall] (Published 2009-12-09, updated 2010-09-06)
Temperature dependence of the diffusive conductivity of bilayer graphene