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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 steins 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 (MnBi_2Te_4), 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,并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-OD(由于NS中的P和T缺乏P和T. )P + ID配对,其中P(d) - 从Quasiply的DIRAC性质(缺少C_4对称)中的p(d) - 脱离组分肌。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(MnBi_2Te_4),可以涂覆Hotscs,而不存在外部应变应该有利于轴轴P +是配对的。

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  • 来源
    《Physical review》 |2020年第22期|220506.1-220506.5|共5页
  • 作者

    Bitan Roy;

  • 作者单位

    Department of Physics Lehigh University Bethlehem Pennsylvania 18015 USA;

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  • 正文语种 eng
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