Landauer's principle in the quantum domain

J. Anders, Saroosh Shabbir, S. Hilt, E. Lutz
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引用次数: 13

Abstract

Recent papers discussing thermodynamic processes in strongly coupled quantum systems claim a violation of Landauer's principle and imply a violation of the second law of thermodynamics. If true, this would have powerful consequences. Perpetuum mobiles could be build as long as the operating temperature is brought close to zero. It would also have serious consequences on thermodynamic derivations of information theoretic results, such as the Holevo bound. Here we argue why these claims are erroneous. Correlations occurring in the strongly coupled, quantum domain require a rethink of how entropy, heat and work are calculated. It is shown that a consistent treatment solves the paradox.
量子域的朗道尔原理
最近讨论强耦合量子系统中的热力学过程的论文声称违反了朗道尔原理,并暗示违反了热力学第二定律。如果这是真的,这将产生强大的后果。只要工作温度接近于零,永动机就可以被制造出来。它还会对信息理论结果的热力学推导产生严重后果,例如Holevo界。在这里,我们讨论为什么这些说法是错误的。在强耦合的量子域中发生的相关性需要重新考虑熵、热量和功的计算方式。结果表明,一致的处理方法解决了这一悖论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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