Chiral Majorana Hinge Modes in Superconducting Dirac Materials

Bo Fu, Zi-Ang Hu, Chang-An Li, Jian Li, S. Shen
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引用次数: 11

Abstract

Chiral Majorana hinge modes are characteristic of a second-order topological superconductor in three dimensions. Here we systematically study pairing symmetry in the point group D_{2h}, and find that the leading pairing channels can be of s-, d-, and s+id-wave pairing in Dirac materials. Except for the odd-parity s-wave pairing superconductivity, the s+id-wave pairing superconductor is topologically nontrivial and possesses Majorana hinge and surface modes. The chiral Majorana hinge modes can be characterized by a winding number of the quadrupole moment, or quantized quadruple moment at the symmetrically invariant point. Our findings suggest the strong spin-orbital coupling, crystalline symmetries and electron-electron interaction in the Dirac materials may provide a microscopic mechanism to realize chiral Majorana hinge modes without utilizing the proximity effect or external fields.
超导狄拉克材料的手性Majorana铰链模式
手性马约拉纳铰链模式是三维二阶拓扑超导体的特征。本文系统地研究了点群D_{2h}中的配对对称性,发现了Dirac材料中领先的配对通道可以是s-、d-和s+id波配对。除了奇宇称s波配对超导外,s+id波配对超导在拓扑上是非平凡的,并且具有马约拉纳铰链和表面模式。手性Majorana铰链模式可以用四极矩的圈数或对称不变点的量化四极矩来表征。我们的研究结果表明,Dirac材料中的强自旋-轨道耦合、晶体对称性和电子-电子相互作用可能为不利用邻近效应或外场实现手性Majorana铰链模式提供了微观机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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