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Abelian and non-Abelian anyons in integer quantum anomalous Hall effect and topological phase transitions via superconducting proximity effect

机译:通过超导邻近效应实现整数量子反常霍尔效应和拓扑相变的Abelian和非Abeleian

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摘要

We study the quantum anomalous Hall effect described by a class of two-component Haldane models on square lattices. We show that the latter can be transformed into a pseudospin triplet p + ip-wave paired superfluid. In the long wavelength limit, the ground-state wave function is described by Halperin's (1,1,-1) state of neutral fermions analogous to the double-layer quantum Hall effect. The vortex excitations are charge e/2 Abelian anyons which carry a neutral Dirac fermion zero mode. The superconducting proximity effect induces "tunneling" between "layers" which leads to topological phase transitions whereby the Dirac fermion zero mode fractionalizes and Majorana fermions emerge in the edge states. The charge e/2 vortex excitation carrying a Majorana zero mode is a non-Abelian anyon. The proximity effect can also drive a conventional insulator into a quantum anomalous Hall effect state with a Majorana edge mode and the non-Abelian vortex excitations.
机译:我们研究由方格上的一类两组分霍尔丹模型描述的量子异常霍尔效应。我们表明,后者可以转化为伪自旋三重态p + ip波配对的超流体。在长波长范围内,基态波函数由类似于双层量子霍尔效应的中性费米子的Halperin(1,1,-1)状态描述。涡旋激发是带有中性狄拉克费米子零模的e / 2阿贝伦电荷。超导邻近效应引起“层”之间的“隧道效应”,从而导致拓扑相变,从而狄拉克费米子零模分裂,马约拉纳费米子出现在边缘状态。带有马约拉那零模式的电荷e / 2涡旋激发是非阿贝尔正午的。邻近效应还可以驱动常规绝缘体进入具有Majorana边缘模式和非阿贝尔涡旋激发的量子异常霍尔效应状态。

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