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迈向铁基超导体上大规模、有序且可调控的马约拉纳零模晶格。

Toward large-scale, ordered and tunable Majorana-zero-modes lattice on iron-based superconductors.

作者信息

Li Geng, Li Meng, Zhou Xingtai, Gao Hong-Jun

机构信息

Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

出版信息

Rep Prog Phys. 2023 Nov 28;87(1). doi: 10.1088/1361-6633/ad0c5c.

Abstract

Majorana excitations are the quasiparticle analog of Majorana fermions in solid materials. Typical examples are the Majorana zero modes (MZMs) and the dispersing Majorana modes. When probed by scanning tunneling spectroscopy, the former manifest as a pronounced conductance peak locating precisely at zero-energy, while the latter behaves as constant or slowly varying density of states. The MZMs obey non-abelian statistics and are believed to be building blocks for topological quantum computing, which is highly immune to the environmental noise. Existing MZM platforms include hybrid structures such as topological insulator, semiconducting nanowire or 1D atomic chains on top of a conventional superconductor, and single materials such as the iron-based superconductors (IBSs) and 4Hb-TaS. Very recently, ordered and tunable MZM lattice has also been realized in IBS LiFeAs, providing a scalable and applicable platform for future topological quantum computation. In this review, we present an overview of the recent local probe studies on MZMs. Classified by the material platforms, we start with the MZMs in the iron-chalcogenide superconductors where FeTeSeand (LiFe)OHFeSe will be discussed. We then review the Majorana research in the iron-pnictide superconductors as well as other platforms beyond the IBSs. We further review recent works on ordered and tunable MZM lattice, showing that strain is a feasible tool to tune the topological superconductivity. Finally, we give our summary and perspective on future Majorana research.

摘要

马约拉纳激发是固体材料中马约拉纳费米子的准粒子类似物。典型例子是马约拉纳零模(MZMs)和色散马约拉纳模。当通过扫描隧道谱进行探测时,前者表现为精确位于零能量处的明显电导峰,而后者表现为恒定或缓慢变化的态密度。MZMs服从非阿贝尔统计,被认为是拓扑量子计算的基石,拓扑量子计算对环境噪声具有高度免疫力。现有的MZM平台包括混合结构,如传统超导体上的拓扑绝缘体、半导体纳米线或一维原子链,以及单一材料,如铁基超导体(IBSs)和4Hb-TaS。最近,在IBS LiFeAs中也实现了有序且可调谐的MZM晶格,为未来的拓扑量子计算提供了一个可扩展且适用的平台。在这篇综述中,我们概述了最近对MZMs的局域探针研究。按材料平台分类,我们首先介绍硫族铁基超导体中的MZMs,将讨论FeTeSe和(LiFe)OHFeSe。然后我们回顾铁基超导化合物中的马约拉纳研究以及IBSs之外的其他平台。我们进一步回顾了关于有序且可调谐MZM晶格的近期工作,表明应变是调节拓扑超导性的可行工具。最后,我们对未来马约拉纳研究给出总结和展望。

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