Magnetic response of Majorana Kramers pairs with an order-two symmetry

Y. Yamazaki, S. Kobayashi, A. Yamakage
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引用次数: 2

Abstract

We study an intrinsic relation between the topology of bulk electronic states and magnetic responses of Majorana Kramers pairs, Kramers pairs of Majorana fermions, on a surface of time-reversal-invariant topological superconductors. Majorana Kramers pairs respond to an applied magnetic field anisotropically due to the interplay between time-reversal and crystal symmetries. In this paper, we propose a systematic procedure to determine such surface magnetic responses in systems with an order-two symmetry. From the analysis of topological invariants associated with an order-two symmetry, it is found that magnetic responses are classified into four types, which are attributed to different topological invariants and exhibit distinguishable, characteristic magnetic responses. For a Kramers pair of Majorana fermions protected by $\mathbb{Z}_2$ topological invariants, we clarify that types of magnetic responses are determined only from Fermi--surface topology and symmetry of Cooper pairs. Finally, we apply our theory to the topological nonsymmorphic crystalline superconducting state in UCoGe, which exhibits a biaxially anisotropic magnetic response.
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具有二阶对称的Majorana Kramers对的磁响应
我们研究了在时间逆不变拓扑超导体表面上的马约拉纳费米子的克雷默斯对(马约拉纳费米子的克雷默斯对)的体电子态拓扑与磁响应之间的内在关系。由于时间反转和晶体对称性之间的相互作用,马约拉纳克莱默斯对对外加磁场的各向异性响应。在本文中,我们提出了一个系统的程序来确定这种表面磁响应的二阶对称系统。通过分析与二阶对称相关的拓扑不变量,发现磁响应可分为四种类型,这些类型归因于不同的拓扑不变量,并表现出可区分的特征磁响应。对于受$\mathbb{Z}_2$拓扑不变量保护的Majorana费米子Kramers对,我们阐明了磁响应的类型仅由费米表面拓扑和Cooper对的对称性决定。最后,我们将我们的理论应用于UCoGe的拓扑非对称晶体超导态,它表现出双轴各向异性的磁响应。
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