Surface-state spin textures in strained bulk HgTe: strain-induced topological phase transitions

Publication date

2016-05-01

Authors

Kirtschig, Frank
Brink, Jeroen van den
Ortix, C.ISNI 0000000352785682

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Document Type

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Abstract

The opening of a band gap due to compressive uniaxial strain renders bulk HgTe a strong three-dimensional topological insulators with protected gapless surface states at any surface. By employing a six-band k.p model, we determine the spin textures of the topological surface states of strained HgTe using their close relations with the mirror Chern numbers of the system and the orbital composition of the surface states. We show that at surfaces with C2v point group symmetry an increase in the strain magnitude triggers a topological phase transition where the winding number of the surface state spin texture is flipped while the four topological invariants characterizing the bulk band structure of the material are unchanged.

Keywords

cond-mat.mes-hall

Citation

Kirtschig, F, Brink, J V D & Ortix, C 2016, 'Surface-state spin textures in strained bulk HgTe : strain-induced topological phase transitions', Physical Review B - Condensed Matter and Materials Physics, vol. 94, no. 23, 235437. https://doi.org/10.1103/PhysRevB.94.235437