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Optically engineering the topological properties of a spin Hall insulator

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arxiv 1105.5963 v2 pith:2UWFVEQW submitted 2011-05-30 cond-mat.mes-hall

Optically engineering the topological properties of a spin Hall insulator

classification cond-mat.mes-hall
keywords propertiesspintopologicaledgehallinsulatorstructurealong
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Time-periodic perturbations can be used to engineer topological properties of matter by altering the Floquet band structure. This is demonstrated for a spin Hall insulator in the presence of monochromatic circularly polarized light. The inherent spin structure of the edge state is influenced by the Zeeman coupling and not by the orbital effect. The photocurrent (and the magnetization along the edge) develops a finite, helicity dependent expectation value and turns from dissipationless to dissipative with increasing radiation frequency, signalling a change in the topological properties. The connection with Thouless' charge pumping and non-equilibrium Zitterbewegung is discussed, together with possible experiments.

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