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测量误差对麦克斯韦妖的影响。

Influence of measurement error on Maxwell's demon.

机构信息

Department of Physics, University of Oslo, 0316 Oslo, Norway.

A. F. Ioffe Physico-Technical Institute of Russian Academy of Sciences, 194021 St. Petersburg, Russia.

出版信息

Phys Rev E. 2017 Jun;95(6-1):062129. doi: 10.1103/PhysRevE.95.062129. Epub 2017 Jun 21.

Abstract

In any general cycle of measurement, feedback, and erasure, the measurement will reduce the entropy of the system when information about the state is obtained, while erasure, according to Landauer's principle, is accompanied by a corresponding increase in entropy due to the compression of logical and physical phase space. The total process can in principle be fully reversible. A measurement error reduces the information obtained and the entropy decrease in the system. The erasure still gives the same increase in entropy, and the total process is irreversible. Another consequence of measurement error is that a bad feedback is applied, which further increases the entropy production if the proper protocol adapted to the expected error rate is not applied. We consider the effect of measurement error on a realistic single-electron box Szilard engine, and we find the optimal protocol for the cycle as a function of the desired power P and error ɛ.

摘要

在任何一般的测量、反馈和擦除循环中,当获得关于状态的信息时,测量会降低系统的熵,而根据 Landauer 原理,擦除伴随着由于逻辑和物理相空间的压缩而导致的相应熵增加。总过程在原则上可以是完全可逆的。测量误差会降低系统中获得的信息和熵的减少。擦除仍然会导致相同的熵增加,并且总过程是不可逆的。测量误差的另一个后果是应用了不良的反馈,如果不应用适应预期错误率的适当协议,这会进一步增加熵产生。我们考虑了测量误差对实际单电子盒 Szilard 发动机的影响,并找到了作为所需功率 P 和误差 ɛ的函数的循环的最佳协议。

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