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平凡与拓扑约瑟夫森结中的量子点奇偶效应

Quantum Dot Parity Effects in Trivial and Topological Josephson Junctions.

作者信息

Razmadze D, O'Farrell E C T, Krogstrup P, Marcus C M

机构信息

Center for Quantum Devices, Niels Bohr Institute, University of Copenhagen, 2100 Copenhagen, Denmark.

Microsoft Quantum Lab-Copenhagen, 2100 Copenhagen, Denmark.

出版信息

Phys Rev Lett. 2020 Sep 11;125(11):116803. doi: 10.1103/PhysRevLett.125.116803.

Abstract

An odd-occupied quantum dot in a Josephson junction can flip transmission phase, creating a π junction. When the junction couples topological superconductors, no phase flip is expected. We investigate this and related effects in a full-shell hybrid interferometer, using gate voltage to control dot-junction parity and axial magnetic flux to control the transition from trivial to topological superconductivity. Enhanced zero-bias conductance and critical current for odd parity in the topological phase reflects hybridization of the confined spin with zero-energy modes in the leads.

摘要

约瑟夫森结中的一个奇数占据量子点可以翻转传输相位,形成一个π结。当该结与拓扑超导体耦合时,预计不会发生相位翻转。我们在一个全壳混合干涉仪中研究了这一现象及相关效应,利用栅极电压控制量子点-结的奇偶性,并利用轴向磁通量控制从平凡超导电性到拓扑超导电性的转变。拓扑相中奇数奇偶性的增强零偏置电导和临界电流反映了受限自旋与引线中零能模式的杂化。

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