Zhu Y L, Hu J, Womack F N, Graf D, Wang Y, Adams P W, Mao Z Q
Physics and Engineering Physics department, Tulane University, New Orleans, LA 70118, United States of America.
J Phys Condens Matter. 2019 Jun 19;31(24):245703. doi: 10.1088/1361-648X/ab0f0d. Epub 2019 Mar 12.
Topological materials which are also superconducting are of great current interest, since they may exhibit a non-trivial topologically-mediated superconducting phase. Although there have been many reports of pressure-tuned or chemical-doping-induced superconductivity in a variety of topological materials, there have been few examples of intrinsic, ambient pressure superconductivity in a topological system having a stoichiometric composition. Here, we report that the pure intermetallic CaSn not only exhibits topological fermion properties, but also has a superconducting phase at ~1.178 K under ambient pressure. The topological fermion properties, including the nearly zero quasi-particle mass and the non-trivial Berry phase accumulated in cyclotron motions, were revealed from the de Haas-van Alphen (dHvA) quantum oscillation studies of this material. Although CaSn was previously reported to be superconducting with T = 4.2 K, our studies show that the T = 4.2 K superconductivity is extrinsic and caused by Sn on the degraded surface, whereas its intrinsic bulk superconducting transition occurs at 1.178 K. These findings make CaSn a promising candidate for exploring new exotic states arising from the interplay between non-trivial band topology and superconductivity, e.g. topological superconductivity (TSC).
兼具超导特性的拓扑材料目前备受关注,因为它们可能呈现出非平凡的拓扑介导超导相。尽管已有许多关于多种拓扑材料中压力调谐或化学掺杂诱导超导性的报道,但在具有化学计量组成的拓扑体系中,本征常压超导的例子却很少。在此,我们报道纯金属间化合物CaSn不仅具有拓扑费米子特性,而且在常压下约1.178 K时存在超导相。通过对该材料的德哈斯 - 范阿尔芬(dHvA)量子振荡研究,揭示了其拓扑费米子特性,包括近乎零的准粒子质量以及回旋运动中积累的非平凡贝里相位。尽管之前报道CaSn在T = 4.2 K时超导,但我们的研究表明,T = 4.2 K的超导性是外在的,由降解表面上的Sn引起,而其本征体超导转变发生在1.178 K。这些发现使CaSn成为探索由非平凡能带拓扑和超导性相互作用产生的新奇特状态(如拓扑超导(TSC))的有前景候选材料。