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Spin Texture and Mirror Chern number in Hg-Based Chalcogenides

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arxiv 1404.7091 v3 pith:X6AOC4WA submitted 2014-04-28 cond-mat.mes-hall

Spin Texture and Mirror Chern number in Hg-Based Chalcogenides

classification cond-mat.mes-hall
keywords spinoppositetexturestopologicalchalcogenidescherndifferenthg-based
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The unique feature of surface states in topological insulators is the so-called "spin-momentum locking", which means that electron spin is oriented along a fixed direction for a given momentum and forms a texture in the momentum space. In this work, we study spin textures of two typical topological insulators in Hg-Based Chalcogenides, namely HgTe and HgS, based on both the first principles calculation and the eight band Kane model. We find opposite helicities of spin textures between these two materials, originating from the opposite signs of spin-orbit couplings. Furthermore, we reveal that different mirror Chern numbers between HgTe and HgS characterize different topological natures of the systems with opposite spin textures and guarantee the existence of gapless interface states.

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