论文标题
准二维超导体Tase $ _3 $中的弱拓扑绝缘体状态
A weak topological insulator state in quasi-one-dimensional superconductor TaSe$_3$
论文作者
论文摘要
在固态系统中找到新的Majorana颗粒的一种公认的方法是具有拓扑电子结构引起的超导性。为此,在过去的十年中,已经积极探索了由正常超导体和拓扑材料组成的异质结构系统。但是,对同时表现出内在超导性和拓扑阶段同时表现出的单一材料系统的搜索在很大程度上受到限制,尽管这种系统对量子设备的应用尤其有利。在这里,我们报告了准二维(Q1D)超导体Tase $ _3 $的电子结构研究。我们的角度分辨光发射光谱(ARPE)和第一原理计算的结果清楚地表明,Tase $ _3 $是拓扑超导体。特征性的大量反转间隙,间隙状态及其非狄拉克分散剂的形状同时指向该材料的拓扑性质性质。 Z $ _2 $索引和拓扑独特的表面带交叉的进一步研究表明,它属于弱拓扑绝缘体(WTI)类。因此,Tase $ _3 $成为固有1D拓扑超导体的第一个验证示例。希望它为使用Majoragan Bound州的未来应用提供了一个有前途的平台,该州本地固定在固有的拓扑超导体结束时。
A well-established way to find novel Majorana particles in a solid-state system is to have superconductivity arising from the topological electronic structure. To this end, the heterostructure systems that consist of normal superconductor and topological material have been actively explored in the past decade. However, a search for the single material system that simultaneously exhibits intrinsic superconductivity and topological phase has been largely limited, although such a system is far more favorable especially for the quantum device applications. Here, we report the electronic structure study of a quasi-one-dimensional (q1D) superconductor TaSe$_3$. Our results of angle-resolved photoemission spectroscopy (ARPES) and first-principles calculation clearly show that TaSe$_3$ is a topological superconductor. The characteristic bulk inversion gap, in-gap state and its shape of non-Dirac dispersion concurrently point to the topologically nontrivial nature of this material. The further investigations of the Z$_2$ indices and the topologically distinctive surface band crossings disclose that it belongs to the weak topological insulator (WTI) class. Hereby, TaSe$_3$ becomes the first verified example of an intrinsic 1D topological superconductor. It hopefully provides a promising platform for future applications utilizing Majorana bound states localized at the end of 1D intrinsic topological superconductors.