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二维拓扑超导体中的持续电流。

Persistent current in 2D topological superconductors.

机构信息

G.V. Kurdyumov Institute for Metal Physics, 36 Vernadsky Boulevard, 03142, Kiev, Ukraine.

出版信息

Sci Rep. 2017 Aug 2;7(1):7124. doi: 10.1038/s41598-017-07492-2.

Abstract

A junction between two boundaries of a topological superconductor (TSC), mediated by localized edge modes of Majorana fermions, is investigated. The tunneling of fermions across the junction depends on the magnetic flux. It breaks the time-reversal symmetry at the boundary of the sample. The persistent current is determined by the emergence of Majorana edge modes. The structure of the edge modes depends on the magnitude of the tunneling amplitude across the junction. It is shown that there are two different regimes, which correspond to strong and weak tunneling of Majorana fermions, distinctive in the persistent current behavior. In a strong tunneling regime, the fermion parity of edge modes is not conserved and the persistent current is a 2π-periodic function of the magnetic flux. When the tunneling is weak the chiral Majorana states, which are propagating along the edges have the same fermion parity. They form a 4π-phase periodic persistent current along the boundaries. The regions in the space of parameters, which correspond to the emergence of 2π- and of 4π-harmonics, are numerically determined. The peculiarities in the persistent current behavior are studied.

摘要

研究了由马约拉纳费米子的局域边缘模式介导的拓扑超导体 (TSC) 两个边界之间的连接。费米子穿过结的隧穿取决于磁通。它破坏了样品边界的时间反转对称性。持续电流由马约拉纳边缘模式的出现决定。边缘模式的结构取决于穿过结的隧穿幅度的大小。结果表明,存在两种不同的状态,它们对应于马约拉纳费米子的强和弱隧穿,在持续电流行为上有明显的区别。在强隧穿状态下,边缘模式的费米子奇偶性不守恒,持续电流是磁通的 2π 周期函数。当隧穿较弱时,沿边缘传播的手征马约拉纳态具有相同的费米子奇偶性。它们在边界上形成一个 4π 相周期的持续电流。通过数值确定了出现 2π 和 4π 谐波的参数空间区域。研究了持续电流行为的特点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/276c/5540975/6b8d3f7f10cf/41598_2017_7492_Fig1_HTML.jpg

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