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沿量子比特的各个轨迹的热与功。

Heat and Work Along Individual Trajectories of a Quantum Bit.

作者信息

Naghiloo M, Tan D, Harrington P M, Alonso J J, Lutz E, Romito A, Murch K W

机构信息

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

Shenzhen Institute for Quantum Science and Engineering and Department of Physics, Southern University of Science and Technology, Shenzhen 518055, People's Republic of China.

出版信息

Phys Rev Lett. 2020 Mar 20;124(11):110604. doi: 10.1103/PhysRevLett.124.110604.

Abstract

We use a near quantum limited detector to experimentally track individual quantum state trajectories of a driven qubit formed by the hybridization of a waveguide cavity and a transmon circuit. For each measured quantum coherent trajectory, we separately identify energy changes of the qubit as heat and work, and verify the first law of thermodynamics for an open quantum system. We further establish the consistency of these results by comparison with the master equation approach and the two-projective-measurement scheme, both for open and closed dynamics, with the help of a quantum feedback loop that compensates for the exchanged heat and effectively isolates the qubit.

摘要

我们使用一个近乎量子极限的探测器,通过实验来跟踪由波导腔与跨导电路杂交形成的受驱量子比特的单个量子态轨迹。对于每条测量到的量子相干轨迹,我们分别将量子比特的能量变化识别为热量和功,并验证开放量子系统的热力学第一定律。在一个补偿交换热量并有效隔离量子比特的量子反馈回路的帮助下,我们通过与主方程方法以及双投影测量方案进行比较,进一步确定了这些结果对于开放和封闭动力学的一致性。

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