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      Topological phase transitions in superradiance lattices

      , , , ,
      Optica
      The Optical Society

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          Quantum Spin Hall Effect in Graphene

          We study the effects of spin orbit interactions on the low energy electronic structure of a single plane of graphene. We find that in an experimentally accessible low temperature regime the symmetry allowed spin orbit potential converts graphene from an ideal two-dimensional semimetallic state to a quantum spin Hall insulator. This novel electronic state of matter is gapped in the bulk and supports the transport of spin and charge in gapless edge states that propagate at the sample boundaries. The edge states are nonchiral, but they are insensitive to disorder because their directionality is correlated with spin. The spin and charge conductances in these edge states are calculated and the effects of temperature, chemical potential, Rashba coupling, disorder, and symmetry breaking fields are discussed.
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            Solution of the Schrödinger Equation with a Hamiltonian Periodic in Time

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              Floquet topological insulator in semiconductor quantum wells

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                Author and article information

                Journal
                Optica
                Optica
                The Optical Society
                2334-2536
                2015
                2015
                August 06 2015
                August 20 2015
                : 2
                : 8
                : 712
                Article
                10.1364/OPTICA.2.000712
                c081b8b4-d118-4064-aed0-c02d1a1ad1b6
                © 2015
                History

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