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Pseudogap and proximity effect in the Bi2Te3/Fe1+yTe interfacial superconductor.


ABSTRACT: In the interfacial superconductor Bi2Te3/Fe1+yTe, two dimensional superconductivity occurs in direct vicinity to the surface state of a topological insulator. If this state were to become involved in superconductivity, under certain conditions a topological superconducting state could be formed, which is of high interest due to the possibility of creating Majorana fermionic states. We report directional point-contact spectroscopy data on the novel Bi2Te3/Fe1+yTe interfacial superconductor for a Bi2Te3 thickness of 9 quintuple layers, bonded by van der Waals epitaxy to a Fe1+yTe film at an atomically sharp interface. Our data show highly unconventional superconductivity, which appears as complex as in the cuprate high temperature superconductors. A very large superconducting twin-gap structure is replaced by a pseudogap above ~12?K which persists up to 40?K. While the larger gap shows unconventional order parameter symmetry and is attributed to a thin FeTe layer in proximity to the interface, the smaller gap is associated with superconductivity induced via the proximity effect in the topological insulator Bi2Te3.

SUBMITTER: He MQ 

PROVIDER: S-EPMC5009436 | biostudies-literature | 2016 Sep

REPOSITORIES: biostudies-literature

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Pseudogap and proximity effect in the Bi2Te3/Fe1+yTe interfacial superconductor.

He M Q MQ   Shen J Y JY   Petrović A P AP   He Q L QL   Liu H C HC   Zheng Y Y   Wong C H CH   Chen Q H QH   Wang J N JN   Law K T KT   Sou I K IK   Lortz R R  

Scientific reports 20160902


In the interfacial superconductor Bi2Te3/Fe1+yTe, two dimensional superconductivity occurs in direct vicinity to the surface state of a topological insulator. If this state were to become involved in superconductivity, under certain conditions a topological superconducting state could be formed, which is of high interest due to the possibility of creating Majorana fermionic states. We report directional point-contact spectroscopy data on the novel Bi2Te3/Fe1+yTe interfacial superconductor for a  ...[more]

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