Fiorelli Eliana, Gherardini Stefano, Marcantoni Stefano
Instituto de Física Interdisciplinar y Sistemas Complejos (IFISC), UIB-CSIC UIB Campus, 07122 Palma de Mallorca, Spain.
Istituto Nazionale di Ottica - CNR, Area Science Park, Basovizza, 34149 Trieste, Italy.
J Stat Phys. 2023;190(6):111. doi: 10.1007/s10955-023-03118-2. Epub 2023 Jun 14.
In this work, we study the stochastic entropy production in open quantum systems whose time evolution is described by a class of non-unital quantum maps. In particular, as in Phys Rev E 92:032129 (2015), we consider Kraus operators that can be related to a nonequilibrium potential. This class accounts for both thermalization and equilibration to a non-thermal state. Unlike unital quantum maps, non-unitality is responsible for an unbalance of the forward and backward dynamics of the open quantum system under scrutiny. Here, concentrating on observables that commute with the invariant state of the evolution, we show how the non-equilibrium potential enters the statistics of the stochastic entropy production. In particular, we prove a fluctuation relation for the latter and we find a convenient way of expressing its average solely in terms of relative entropies. Then, the theoretical results are applied to the thermalization of a qubit with non-Markovian transient, and the phenomenon of irreversibility mitigation, introduced in Phys Rev Res 2:033250 (2020), is analyzed in this context.
在这项工作中,我们研究了开放量子系统中的随机熵产生,其时间演化由一类非幺正量子映射描述。特别地,如《物理评论E》92:032129 (2015)中所述,我们考虑了与非平衡势相关的克劳斯算子。这类算子既考虑了热化过程,也考虑了达到非热态的平衡过程。与幺正量子映射不同,非幺正性导致了所研究的开放量子系统的正向和反向动力学的不平衡。在此,专注于与演化的不变态对易的可观测量,我们展示了非平衡势如何进入随机熵产生的统计中。特别地,我们证明了后者的涨落关系,并找到了一种仅用相对熵来表示其平均值的简便方法。然后,将理论结果应用于具有非马尔可夫瞬态的量子比特的热化过程,并在此背景下分析了《物理评论研究》2:033250 (2020)中引入的不可逆性缓解现象。