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压力诱导拓扑绝缘体 Bi2Se3 中的非常规超导相。

Pressure-induced unconventional superconducting phase in the topological insulator Bi2Se3.

机构信息

Department of Physics, Center for Nanophysics and Advanced Materials, University of Maryland, College Park, Maryland 20742, USA.

出版信息

Phys Rev Lett. 2013 Aug 23;111(8):087001. doi: 10.1103/PhysRevLett.111.087001. Epub 2013 Aug 20.

Abstract

Simultaneous low-temperature electrical resistivity and Hall effect measurements were performed on single-crystalline Bi2Se3 under applied pressures up to 50 GPa. As a function of pressure, superconductivity is observed to onset above 11 GPa with a transition temperature Tc and upper critical field Hc2 that both increase with pressure up to 30 GPa, where they reach maximum values of 7 K and 4 T, respectively. Upon further pressure increase, Tc remains anomalously constant up to the highest achieved pressure. Conversely, the carrier concentration increases continuously with pressure, including a tenfold increase over the pressure range where Tc remains constant. Together with a quasilinear temperature dependence of Hc2 that exceeds the orbital and Pauli limits, the anomalously stagnant pressure dependence of Tc points to an unconventional pressure-induced pairing state in Bi2Se3 that is unique among the superconducting topological insulators.

摘要

在高达 50 GPa 的压力下,对单晶 Bi2Se3 进行了同时低温电阻率和 Hall 效应测量。随着压力的增加,超导性在 11 GPa 以上开始出现,转变温度 Tc 和上临界磁场 Hc2 都随着压力增加到 30 GPa 而增加,分别达到 7 K 和 4 T 的最大值。在进一步增加压力后,Tc 在上限压力下保持异常恒定。相反,载流子浓度随着压力不断增加,包括在 Tc 保持恒定的压力范围内增加了十倍。与超过轨道和泡利极限的 Hc2 的准线性温度依赖性一起,Tc 的异常停滞的压力依赖性表明,在超导拓扑绝缘体中,Bi2Se3 中的配对状态是非传统的压力诱导的,这是独特的。

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