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Higher-order topological superconductors in P-, T-odd quadrupolar Dirac materials

机译:P-,T-odd Quadrupolar DIRAC材料中高阶拓扑超导体

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摘要

The presence or absence of certain symmetries in the normal state (NS) also determines the symmetry of the Cooper pairs. Here, we show that parity (P-) and time-reversal (T-) odd Dirac insulators (trivial or topological) or metals, sustain a local or intraunit cell pairing that supports corner (in d = 2) or hinge (in d = 3) modes of Majorana fermions and stands as a higher-order topological superconductor (HOTSC), when the NS additionally breaks discrete fourfold (C-4) symmetry. Although these outcomes do not rely on the existence of a Fermi surface, around it (when the system is doped) the HOTSC takes the form of a mixed parity, T-odd (due to the lack of P and T in the NS, respectively) p + id pairing, where the p(d)-wave component stems from the Dirac nature of quasiparticles (lack of C-4 symmetry) in the NS. Thus, when strained, magnetically ordered Dirac materials, such as doped magnetic topological insulators (MnBi2Te4), can harbor HOTSCs, while the absence of an external strain should be conducive for the axionic p + is pairing.
机译:在正常状态(NS)中的某些对称性的存在或不存在也决定了库代码对的对称性。在这里,我们表明奇偶校验(P-)和时间逆转(T-)奇数迪拉姆绝缘体(琐碎或拓扑)或金属,维持支撑角(在d = 2)或铰链中的局部或肝内细胞配对(在d中= 3)ModeAna Fermions的模式,作为高阶拓扑超导体(HotSC),当NS另外打破离散的四倍(C-4)对称性。虽然这些结果不依赖于FERMI表面的存在,但周围(当系统掺杂时)HOTSC采用混合奇偶校验的形式T-ODC(由于NS中的P和T缺乏P和T. )P + ID配对,其中P(d) - 波部件源于NS中Quasiply(缺乏C-4对称)的DIRAC性质。因此,当应变时,磁性有序的Dirac材料,例如掺杂的磁性拓扑绝缘体(MnBi2Te4),可以涂覆Hotscs,而不存在外部应变的缺失应该有利于轴轴P +是配对的。

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