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Chiral 1D Floquet topological insulators beyond rotating wave approximation

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arxiv 1811.12062 v2 pith:6RMK6AAT submitted 2018-11-29 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords floquettesstopologicalapproximationbeyondchiralinsulatorsrotating
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We study one-dimensional (1D) Floquet topological insulators with chiral symmetry going beyond the standard rotating wave approximation. The occurrence of many anticrossings between Floquet replicas leads to a dramatic extension of phase diagram regions with stable topological edge states (TESs). We present an explicit construction of all TESs in terms of a truncated Floquet Hamiltonian in frequency space, prove the bulk-boundary correspondence, and analyze the stability of the TESs in terms of their localization lengths. We propose experimental tests of our predictions in curved bilayer graphene.

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  1. Floquet topological insulators: from band structure engineering to novel non-equilibrium quantum phenomena

    cond-mat.mes-hall 2019-09 unverdicted

    A review of Floquet topological insulators, covering drive-engineered band topology, anomalous edge states with trivial bulk Chern numbers, and the prethermal, MBL, and bath-engineering routes to stable driven phases.

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