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Observation of Topological Superconductivity on the Surface of an Iron-based Superconductor

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Journal Science
Specialty Science
Date 2018 Mar 10
PMID 29519917
Citations 47
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Abstract

Topological superconductors are predicted to host exotic Majorana states that obey non-Abelian statistics and can be used to implement a topological quantum computer. Most of the proposed topological superconductors are realized in difficult-to-fabricate heterostructures at very low temperatures. By using high-resolution spin-resolved and angle-resolved photoelectron spectroscopy, we find that the iron-based superconductor FeTe Se ( = 0.45; superconducting transition temperature = 14.5 kelvin) hosts Dirac-cone-type spin-helical surface states at the Fermi level; the surface states exhibit an s-wave superconducting gap below Our study shows that the surface states of FeTeSe are topologically superconducting, providing a simple and possibly high-temperature platform for realizing Majorana states.

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