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有效温度下兰道尔重置中的热产生与误差概率关系

Heat production and error probability relation in Landauer reset at effective temperature.

作者信息

Neri Igor, López-Suárez Miquel

机构信息

NiPS Laboratory, Dipartimento di Fisica e Geologia, Università degli Studi di Perugia, 06123 Perugia, Italy.

INFN Sezione di Perugia, via Pascoli, 06123 Perugia, Italy.

出版信息

Sci Rep. 2016 Sep 27;6:34039. doi: 10.1038/srep34039.

Abstract

The erasure of a classical bit of information is a dissipative process. The minimum heat produced during this operation has been theorized by Rolf Landauer in 1961 to be equal to kT ln2 and takes the name of Landauer limit, Landauer reset or Landauer principle. Despite its fundamental importance, the Landauer limit remained untested experimentally for more than fifty years until recently when it has been tested using colloidal particles and magnetic dots. Experimental measurements on different devices, like micro-mechanical systems or nano-electronic devices are still missing. Here we show the results obtained in performing the Landauer reset operation in a micro-mechanical system, operated at an effective temperature. The measured heat exchange is in accordance with the theory reaching values close to the expected limit. The data obtained for the heat production is then correlated to the probability of error in accomplishing the reset operation.

摘要

经典信息比特的擦除是一个耗散过程。1961年,罗尔夫·兰道尔从理论上推断,此操作过程中产生的最小热量等于kT ln2,这一热量被称为兰道尔极限、兰道尔重置或兰道尔原理。尽管其具有根本重要性,但兰道尔极限在五十多年里一直未得到实验验证,直到最近才利用胶体颗粒和磁点进行了测试。针对不同器件(如微机械系统或纳米电子器件)的实验测量仍未开展。在此,我们展示了在有效温度下运行的微机械系统中执行兰道尔重置操作所获得的结果。测得的热交换符合理论,达到了接近预期极限的值。然后,将获得的热量产生数据与完成重置操作时的错误概率相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71f2/5037424/b7832257c038/srep34039-f1.jpg

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