Key Laboratory of Artificial Structures and Quantum Control (Ministry of Education), Shenyang National Laboratory for Materials Science, School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai, 200240, China.
Tsung-Dao Lee Institute, Shanghai Jiao Tong University, Shanghai, 200240, China.
Adv Mater. 2019 Dec;31(52):e1905582. doi: 10.1002/adma.201905582. Epub 2019 Nov 13.
Superconducting topological crystalline insulators are expected to form a new type of topological superconductors to host Majorana zero modes under the protection of lattice symmetries. The bulk superconductivity of topological crystalline insulators can be induced through chemical doping and the proximity effect. However, only conventional full gaps are observed, so the existence of topological superconductivity in topological crystalline insulators is still controversial. Here, the successful fabrication of atomically flat lateral and vertical Sn Pb Te-Pb heterostructures by molecular beam epitaxy is reported. The superconductivity of the Sn Pb Te-Pb heterostructures can be directly investigated by scanning tunneling spectroscopy. Unconventional peak-dip-hump gap features and fourfold symmetric quasiparticle interference patterns taken at the zero energy in the superconducting gap support the presence of the topological superconductivity in superconducting Sn Pb Te. Strong superconducting proximity effect and easy preparation of various constructions between Sn Pb Te and Pb make the heterostructures to be a promising candidate for topological superconducting devices to detect and manipulate Majorana zero modes in the future.
超导拓扑晶体绝缘体有望在晶格对称性的保护下形成新型拓扑超导体,从而支持马约拉纳零模。通过化学掺杂和近邻效应可以诱导拓扑晶体绝缘体的体超导性。然而,只观察到常规的全能隙,因此拓扑晶体绝缘体中的拓扑超导性仍然存在争议。本工作通过分子束外延成功制备了原子级平坦的横向和垂直 SnPbTe-Pb 异质结构。通过扫描隧道光谱可以直接研究 SnPbTe-Pb 异质结构的超导性。在超导能隙中零能处观察到的非常规峰谷峰能隙特征和四重对称准粒子干涉图案支持超导 SnPbTe 中存在拓扑超导性。超导近邻效应强,SnPbTe 与 Pb 之间易于制备各种结构,使异质结构成为未来探测和操纵马约拉纳零模的拓扑超导器件的有前途的候选材料。