量子纠缠
量子不和谐
工作(物理)
统计物理学
量子
量子热力学
量子相对熵
熵(时间箭头)
光学(聚焦)
可分离态
量子信息
物理
量子力学
光学
作者
Martí Perarnau-Llobet,Karen V. Hovhannisyan,Marcus Huber,Paul Skrzypczyk,Nicolas Brunner,Antonio Acín
标识
DOI:10.1103/physrevx.5.041011
摘要
Work and quantum correlations are two fundamental resources in thermodynamics and quantum information theory. In this work, we study how to use correlations among quantum systems to optimally store work. We analyze this question for isolated quantum ensembles, where the work can be naturally divided into two contributions: a local contribution from each system and a global contribution originating from correlations among systems. We focus on the latter and consider quantum systems that are locally thermal, thus from which any extractable work can only come from correlations. We compute the maximum extractable work for general entangled states, separable states, and states with fixed entropy. Our results show that while entanglement gives an advantage for small quantum ensembles, this gain vanishes for a large number of systems.
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