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Topological Phase Transition Driven by Infinitesimal Instability: Majorana Fermions in Non-Hermitian Spintronics

机译:极小不稳定性驱动的拓扑相变:非埃尔米特自旋电子学中的马约拉纳费米子

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摘要

Quantum phase transitions are intriguing and fundamental cooperative phenomena in physics. Analyzing a superconducting nanowire with spin-dependent non-Hermitian hopping, we discover a topological quantum phase transition driven by infinitesimal cascade instability. The anomalous phase transition is complementary to the universal non-Bloch wave behavior of non-Hermitian systems. We show that an infinite small magnetic field drastically suppresses the non-Hermitian skin effect, inducing a topological phase with Majorana boundary states. Furthermore, by identifying the bulk topological invariant, we establish the non-Hermitian bulk-boundary correspondence that does not have a Hermitian counterpart. We also discuss an experimental realization of the system by using the spin-current injection to a quantum wire.
机译:量子相变是物理学中令人着迷的基本合作现象。用自旋相关的非赫米特跳跃分析超导纳米线,我们发现由无限小级联不稳定性驱动的拓扑量子相变。异常相变是对非Hermitian系统的通用非Bloch波行为的补充。我们表明,无限的小磁场会极大地抑制非埃尔米特集肤效应,并诱导具有马约拉纳边界状态的拓扑相。此外,通过识别体拓扑不变性,我们建立了没有Hermitian对应物的非Hermitian体边界对应关系。我们还将讨论通过将自旋电流注入量子线来实现该系统的实验实现。

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