Quantum magnetotransport properties of topological insulators under strain
Author(s) -
M. Tahir,
Udo Schwingenschlögl
Publication year - 2012
Publication title -
physical review b
Language(s) - English
Resource type - Journals
eISSN - 1538-4489
pISSN - 1098-0121
DOI - 10.1103/physrevb.86.075310
Subject(s) - condensed matter physics , topological insulator , magnetoresistance , landau quantization , magnetic field , kubo formula , scattering , quantum hall effect , shubnikov–de haas effect , physics , hall effect , conductivity , quantum oscillations , quantum mechanics , fermi surface , superconductivity
We present a detailed theoretical investigation of the quantum magnetotransport properties of topological insulators under strain. We consider an external magnetic field perpendicular to the surface of the topological insulator in the presence of strain induced by the substrate. The strain effects mix the lower and upper surface states of neighboring Landau levels into two unequally spaced energy branches. Analytical expressions are derived for the collisional conductivity for elastic impurity scattering in the first Born approximation. We also calculate the Hall conductivity using the Kubo formalism. Evidence for the beating of Shubnikov–de Haas oscillations is found from the temperature and magnetic field dependence of the collisional and Hall conductivities. In the regime of a strong magnetic field, the beating pattern is replaced by a splitting of the magnetoresistance peaks due to finite strain energy. These results are in excellent agreement with recent HgTe transport experiments
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