论文标题
拓扑绝缘体中的拓扑超导性
Topological superconductivity in a topological insulator
论文作者
论文摘要
拓扑超导性是一种异国情调的量子现象,具有耦合的非平凡拓扑顺序和超导性。产生拓扑超导体的直接想法是基于公认的拓扑绝缘子创建超导率。高效的热电材料BI $ _2 $ TE $ _3 $和BI $ _2 $ _2 $ SE $ _3 $及其合金BI $ _ {2} $ _ {2} $ _ {3-x} $ se $ _ {x} $的拓扑绝缘状态已建立,是由斜角分辨的光发射和运输经验建立的。还通过应用压力化学掺杂剂和异质结构,根据这些流行的拓扑绝缘子观察到超导性。但是,主要关注BI $ _ {2} $ se $ _3 $的实验尚未提供一致的证据来支持拓扑超导性。在这里,我们对拓扑绝缘体BI $ _ {2} $ te $ _ {2.7} $ se $ _ {0.3} $进行了一项系统的高压研究,以提供令人信服的证据证明预期的拓扑超导性。压缩后发现具有不同结构的四个阶段。拓扑表面状态在整个初始阶段都鉴定出来,而超导性在通过电子拓扑转换后与压缩材料的这种状态共存,然后是其他三个没有拓扑特征的超导相。对于这些超导阶段,我们观察到,上层临界场遵循临界指数$ {2/3} $的温度,第一个具有拓扑表面状态的温度,左侧的温度为$ 1 $。这些观察结果支持根据理论上提出的临界场测量在初始阶段实现拓扑超导性。这项工作还指出了一个大型池和新方向,用于从拓扑热电材料中找到拓扑超导体。
Topological superconductivity is an exotic quantum phenomenon with coupled nontrivial topological order and superconductivity together. A direct idea for producing topological superconductors is to create superconductivity based on the well recognized topological insulators. The topological insulating states in highly efficient thermoelectric materials Bi$_2$Te$_3$ and Bi$_2$Se$_3$ and their alloy Bi$_{2}$Te$_{3-x}$Se$_{x}$ have been established from angle-resolved photoemission and transport experiments. Superconductivity was also observed based on these popular topological insulators by the application of pressure chemical dopant and heterostructures. However, the experiments mainly focusing on Bi$_{2}$Se$_3$ doped by metals have not provided the consistent evidence to support the topological superconductivity. Here we carry out a systematic high-pressure study on a topological insulator Bi$_{2}$Te$_{2.7}$Se$_{0.3}$ to provide the convincing evidence for the expected topological superconductivity. Four phases with different structures are found upon compression. The topological surface state is identified in the entire initial phase, while superconductivity is found to coexist with such a state of the compressed material after its passing the electronic topological transition, followed by three other superconducting phases without topological character. For these superconducting phases, we observe that the upper critical field follows with the temperature in the critical exponent ${2/3}$ for the first one with the topological surface state and $1$ for the left. These observations support the realization of the topological superconductivity in the initial phase according to the theoretically proposed critical field measure. This work also points out a big pool and new direction for finding topological superconductors from topological thermoelectric materials.