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Majorana bound states from exceptional points in non-topological superconductors

机译:非拓扑超导体中从特殊点出发的马约拉纳约束态

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摘要

Recent experimental efforts towards the detection of Majorana bound states have focused on creating the conditions for topological superconductivity. Here we demonstrate an alternative route, which achieves fully localised zero-energy Majorana bound states when a topologically trivial superconductor is strongly coupled to a helical normal region. Such a junction can be experimentally realised by e.g. proximitizing a finite section of a nanowire with spin-orbit coupling, and combining electrostatic depletion and a Zeeman field to drive the non-proximitized (normal) portion into a helical phase. Majorana zero modes emerge in such an open system without fine-tuning as a result of charge-conjugation symmetry, and can be ultimately linked to the existence of ‘exceptional points’ (EPs) in parameter space, where two quasibound Andreev levels bifurcate into two quasibound Majorana zero modes. After the EP, one of the latter becomes non-decaying as the junction approaches perfect Andreev reflection, thus resulting in a Majorana dark state (MDS) localised at the NS junction. We show that MDSs exhibit the full range of properties associated to conventional closed-system Majorana bound states (zero-energy, self-conjugation, 4π-Josephson effect and non-Abelian braiding statistics), while not requiring topological superconductivity.
机译:最近对检测Majorana束缚态的实验工作集中在为拓扑超导性创造条件。在这里,我们演示了一种替代途径,当拓扑琐碎的超导体与螺旋正态区域强烈耦合时,该途径可实现完全局部化的零能量Majorana约束状态。这样的结可以例如通过实验来实现。通过自旋-轨道耦合来限制纳米线的有限部分,并结合静电耗散和塞曼场,以将未被限制的(正常)部分驱动为螺旋相。 Majorana零模式出现在这样的开放系统中,由于电荷共轭对称性而无需进行微调,并且最终可以与参数空间中“异常点”(EPs)的存在相关联,其中两个准绑定的Andreev能级分叉成两个准绑定的Majorana零模式。在EP之后,随着结接近完美的Andreev反射,后者之一将变得不衰减,从而导致位于NS结处的Majorana暗态(MDS)。我们表明,MDS表现出与常规封闭系统Majorana束缚态相关的全部性能(零能量,自共轭,4π-Josephson效应和非阿贝尔编织统计),而无需拓扑超导性。

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