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TT: Fachverband Tiefe Temperaturen
TT 57: Topological Semimetals III
TT 57.5: Vortrag
Mittwoch, 14. März 2018, 11:00–11:15, A 053
Anomaly transport in graphene and Weyl semimetals normally explained — •Klaus Morawetz — Münster University of Applied Sciences,Stegerwaldstrasse 39, 48565 Steinfurt, Germany — International Institute of Physics- UFRN,Campus Universitário Lagoa nova,59078-970 Natal, Brazil — Max-Planck-Institute for the Physics of Complex Systems, 01187 Dresden, Germany
Based on the quantum kinetic equations for systems with SU(2) structure,
regularization-free density and pseudospin currents are calculated in Graphene and Weyl-systems realized as the
infinite-mass limit of electrons with quadratic dispersion and a proper
spin-orbit coupling. Correspondingly the currents possess no quasiparticle
part but only anomalous parts. The intraband and interband conductivities are
discussed. The optical conductivity agrees well
with the experimental values using screened impurity scattering and an
effective Zeeman field. The universal value of Hall conductivity is shown to
be modified due to the Zeeman field. The pseudospin current reveals an anomaly since a quasiparticle part appears though it vanishes for particle currents.
Phys. Rev. B 94 (2016) 165415,
Phys. Rev. B 92 (2015) 245425
errata: Phys. Rev. B93 (2016) 239904(E)
Phys. Rev. B 92 (2015) 245426