论文标题
量化雅致性和量子引起的与经典波动关系的偏差
Quantifying athermality and quantum induced deviations from classical fluctuation relations
论文作者
论文摘要
近年来,量子信息理论框架已出现,用于将非古典现象纳入波动关系。在这里,我们通过探索与最初的热系统和能源供应的量子相干性产生的经典波动关系的偏差来阐明这一框架。特别是,我们为振荡器系统开发了类似骗子的平等性,该振荡器系统是在添加的光子或减去光子的热状态下制备的,并得出了平均工作提取的jarzynski样平等。我们使用这些平等性讨论添加或减去光子增加状态的信息内容的程度,从而扩大了自由能增加过程的抑制。我们继续为在纯二项式状态制备的能源供应中得出一个类似骗子的平等,从而导致能量和对产生的不可逆性的一致性产生非平凡的贡献。我们展示了二项式状态平等与以前派生的相干状态平等相关的符合关系,并提供了更丰富的功能集。
In recent years a quantum information theoretic framework has emerged for incorporating non-classical phenomena into fluctuation relations. Here we elucidate this framework by exploring deviations from classical fluctuation relations resulting from the athermality of the initial thermal system and quantum coherence of the system's energy supply. In particular we develop Crooks-like equalities for an oscillator system which is prepared either in photon added or photon subtracted thermal states and derive a Jarzynski-like equality for average work extraction. We use these equalities to discuss the extent to which adding or subtracting a photon increases the informational content of a state thereby amplifying the suppression of free energy increasing process. We go on to derive a Crooks-like equality for an energy supply that is prepared in a pure binomial state, leading to a non-trivial contribution from energy and coherence on the resultant irreversibility. We show how the binomial state equality fits in relation to a previously derived coherent state equality and offers a richer feature-set.