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      Observation of Floquet-Bloch states on the surface of a topological insulator

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          Abstract

          The unique electronic properties of the surface electrons in a topological insulator are protected by time-reversal symmetry. Circularly polarized light naturally breaks time-reversal symmetry, which may lead to an exotic surface quantum Hall state. Using time- and angle-resolved photoemission spectroscopy, we show that an intense ultrashort mid-infrared pulse with energy below the bulk band gap hybridizes with the surface Dirac fermions of a topological insulator to form Floquet-Bloch bands. These photon dressed surface bands exhibit polarization-dependent band gaps at avoided crossings. Circularly polarized photons induce an additional gap at the Dirac point, which is a signature of broken time-reversal symmetry on the surface. These observations establish the Floquet-Bloch bands in solids and pave the way for optical manipulation of topological quantum states of matter.

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          Author and article information

          Journal
          28 October 2013
          Article
          10.1126/science.1239834
          1310.7563
          08d6e332-1b6e-4ecf-98a6-daf3ab3efd89

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          Science,342,453 (2013)
          23 pages including supplementary materials
          cond-mat.mes-hall

          Nanophysics
          Nanophysics

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