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量子首次通过过程的热力学不确定性关系。

Thermodynamic uncertainty relation for quantum first-passage processes.

作者信息

Hasegawa Yoshihiko

机构信息

Department of Information and Communication Engineering, Graduate School of Information Science and Technology, The University of Tokyo, Tokyo 113-8656, Japan.

出版信息

Phys Rev E. 2022 Apr;105(4-1):044127. doi: 10.1103/PhysRevE.105.044127.

Abstract

We derive a thermodynamic uncertainty relation for first passage processes in quantum Markov chains. We consider first passage processes that stop after a fixed number of jump events, which contrasts with typical quantum Markov chains which end at a fixed time. We obtain bounds for the observables of the first passage processes in quantum Markov chains by the Loschmidt echo, which quantifies the extent of irreversibility in quantum many-body systems. Considering a particular case, we show that the lower bound corresponds to the quantum Fisher information, which plays a fundamental role in uncertainty relations in quantum systems. Moreover, considering classical dynamics, our bound reduces to a thermodynamic uncertainty relation for classical first passage processes.

摘要

我们推导了量子马尔可夫链中首次通过过程的热力学不确定性关系。我们考虑在固定数量的跳跃事件后停止的首次通过过程,这与在固定时间结束的典型量子马尔可夫链形成对比。我们通过洛施密特回波获得了量子马尔可夫链中首次通过过程可观测量的界,洛施密特回波量化了量子多体系统中的不可逆程度。考虑一个特殊情况,我们表明下限对应于量子费希尔信息,它在量子系统的不确定性关系中起着基本作用。此外,考虑经典动力学时,我们的界简化为经典首次通过过程的热力学不确定性关系。

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引用本文的文献

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