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第二定律、麦克斯韦妖以及量子热机可获得的功。

The second law, Maxwell's demon, and work derivable from quantum heat engines.

作者信息

Kieu Tien D

机构信息

Centre for Atom Optics and Ultrafast Spectroscopy, Swinburne University of Technology, Hawthorn 3122, Australia.

出版信息

Phys Rev Lett. 2004 Oct 1;93(14):140403. doi: 10.1103/PhysRevLett.93.140403. Epub 2004 Sep 29.

Abstract

With a class of quantum heat engines which consists of two-energy-eigenstate systems undergoing, respectively, quantum adiabatic processes and energy exchanges with heat baths at different stages of a cycle, we are able to clarify some important aspects of the second law of thermodynamics. The quantum heat engines also offer a practical way, as an alternative to Szilard's engine, to physically realize Maxwell's demon. While respecting the second law on the average, they are also capable of extracting more work from the heat baths than is otherwise possible in thermal equilibrium.

摘要

通过一类量子热机,其由分别经历量子绝热过程并在循环的不同阶段与热库进行能量交换的双能量本征态系统组成,我们能够阐明热力学第二定律的一些重要方面。这些量子热机还提供了一种实际方法,作为西拉德热机的替代方案,从物理上实现麦克斯韦妖。虽然平均而言遵循第二定律,但它们也能够从热库中提取比热平衡状态下更多的功。

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