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Pressure induced Superconductivity in Topological Compound Bi2Te3

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arxiv 1009.3691 v2 pith:EKZ4W3S2 submitted 2010-09-20 cond-mat.supr-con cond-mat.mtrl-sciquant-ph

classification cond-mat.supr-concond-mat.mtrl-sciquant-ph
keywords surfacebi2te3bulkpressurestatestatestopologicalbeen
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Bi2Te3 compound has been theoretically predicted (1) to be a topological insulator, and its topologically non-trivial surface state with a single Dirac cone has been observed in photoemission experiments (2). Here we report that superconductivity (Tc^~3K) can be induced in Bi2Te3 as-grown single crystal (with hole-carriers) via pressure. The first-principles calculations show that the electronic structure under pressure remains to be topologically nontrivial, and the Dirac-type surface states can be well distinguished from bulk states at corresponding Fermi level. The proximity effect between superconducting bulk states and Dirac-type surface state could generate Majorana fermions on the surface. We also discuss the possibility that the bulk state could be a topological superconductor.

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