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Thermodynamic uncertainty relation for general open quantum systems

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arxiv 2003.08557 v4 pith:MNNW7F7K submitted 2020-03-19 cond-mat.stat-mech quant-ph

classification cond-mat.stat-mechquant-ph
keywords quantumrelationgeneralopensystemactivityboundclassical
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We derive a thermodynamic uncertainty relation for general open quantum dynamics, described by a joint unitary evolution on a composite system comprising a system and an environment. By measuring the environmental state after the system-environment interaction, we bound the counting observables in the environment by the survival activity, which reduces to the dynamical activity in classical Markov processes. Remarkably, the relation derived herein holds for general open quantum systems with any counting observable and any initial state. Therefore, our relation is satisfied for classical Markov processes with arbitrary time-dependent transition rates and initial states. We apply our relation to continuous measurement and the quantum walk to find that the quantum nature of the system can enhance the precision. Moreover, we can make the lower bound arbitrarily small by employing appropriate continuous measurement.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The role of correlations in a sequence of quantum observations on empirical measures

    quant-ph 2024-11 conditional novelty 6.0 of 10

    For general sequential quantum measurements, the paper derives asymptotic covariance matrices of empirical distributions of outcome substrings and a relative-entropy measure of the influence of correlations.

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