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铜(x)铋(2)硒(3)中的拓扑超导性。

Topological Superconductivity in Cu(x)Bi(2)Se(3).

机构信息

Institute of Scientific and Industrial Research, Osaka University, Ibaraki, Japan.

出版信息

Phys Rev Lett. 2011 Nov 18;107(21):217001. doi: 10.1103/PhysRevLett.107.217001. Epub 2011 Nov 14.

Abstract

A topological superconductor (TSC) is characterized by the topologically protected gapless surface state that is essentially an Andreev bound state consisting of Majorana fermions. While a TSC has not yet been discovered, the doped topological insulator Cu(x)Bi(2)Se(3), which superconducts below ∼3 K, has been predicted to possess a topological superconducting state. We report that the point-contact spectra on the cleaved surface of superconducting Cu(x)Bi(2)Se(3) present a zero-bias conductance peak (ZBCP) which signifies unconventional superconductivity. Theoretical considerations of all possible superconducting states help us conclude that this ZBCP is due to Majorana fermions and gives evidence for a topological superconductivity in Cu(x)Bi(2)Se(3). In addition, we found an unusual pseudogap that develops below ∼20 K and coexists with the topological superconducting state.

摘要

拓扑超导体 (TSC) 的特征是拓扑保护的无能隙表面态,它本质上是由马约拉纳费米子组成的安德烈夫束缚态。虽然尚未发现 TSC,但掺杂拓扑绝缘体 Cu(x)Bi(2)Se(3) 在约 3 K 以下超导,已被预测具有拓扑超导态。我们报告说,在超导 Cu(x)Bi(2)Se(3) 的劈开表面上的点接触光谱呈现出零偏压电导峰 (ZBCP),这表明存在非常规超导性。对所有可能超导态的理论考虑帮助我们得出结论,这个 ZBCP 是由马约拉纳费米子引起的,并为 Cu(x)Bi(2)Se(3) 中的拓扑超导性提供了证据。此外,我们发现了一个不寻常的赝能隙,它在约 20 K 以下发展,并与拓扑超导态共存。

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