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超导量子比特非厄米动力学中的量子跃迁

Quantum Jumps in the Non-Hermitian Dynamics of a Superconducting Qubit.

作者信息

Chen Weijian, Abbasi Maryam, Joglekar Yogesh N, Murch Kater W

机构信息

Department of Physics, Washington University, St. Louis, Missouri 63130, USA.

Center for Quantum Sensors, Washington University, St. Louis, Missouri 63130, USA.

出版信息

Phys Rev Lett. 2021 Oct 1;127(14):140504. doi: 10.1103/PhysRevLett.127.140504.

Abstract

We study the dynamics of a driven non-Hermitian superconducting qubit which is perturbed by quantum jumps between energy levels, a purely quantum effect with no classical correspondence. The quantum jumps mix the qubit states leading to decoherence. We observe that this decoherence rate is enhanced near the exceptional point, owing to the cube-root topology of the non-Hermitian eigenenergies. Together with the effect of non-Hermitian gain or loss, quantum jumps can also lead to a breakdown of adiabatic evolution under the slow-driving limit. Our study shows the critical role of quantum jumps in generalizing the applications of classical non-Hermitian systems to open quantum systems for sensing and control.

摘要

我们研究了一个受驱动的非厄米超导量子比特的动力学,该量子比特受到能级间量子跃迁的扰动,这是一种没有经典对应物的纯量子效应。量子跃迁混合了量子比特状态,导致退相干。我们观察到,由于非厄米本征能量的立方根拓扑结构,在例外点附近这种退相干速率会增强。连同非厄米增益或损耗的效应,量子跃迁在慢驱动极限下也会导致绝热演化的失效。我们的研究表明,量子跃迁在将经典非厄米系统的应用推广到用于传感和控制的开放量子系统中起着关键作用。

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