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旋转最小热力学系统

Rotating Minimal Thermodynamic Systems.

作者信息

Bormashenko Edward

机构信息

Chemical Engineering Department, Engineering Sciences Faculty, Ariel University, Ariel 407000, Israel.

出版信息

Entropy (Basel). 2022 Jan 23;24(2):168. doi: 10.3390/e24020168.

Abstract

Minimal rotating thermodynamic systems are addressed. Particle placed into the rotating symmetrical double-well potential (bowl), providing binary logical system is considered. The condition providing the transfer of the particle from one frictionless half-well to another, and, in this way, the possibility to record 1 bit of information is derived. The procedure of recording turns out to be irreversible; it is impossible to return the particle to its initial state under rotation about the same axis. The same rotating double-well system exerted to the thermal noise is considered. A minimal rotating thermal engine built of the rotating chamber, movable partition, and the particle confined within the chamber is treated. Rotation of the system displaces the partition, thus enabling erasing of one bit information. Erasing of 1 bit of information is due to the inertia (centrifugal force) acting on the partition. Isothermal expansion of the "minimal gas" expectedly gives rise to the Landauer bound. Compression of the "gas" with the rotation around the same axis is impossible and demands the additional axis of rotation. The interrelation between the possibility of recording/erasing information and the symmetry of the system is considered.

摘要

研究了最小旋转热力学系统。考虑了置于旋转对称双阱势(碗状)中的粒子,该势提供了二元逻辑系统。推导了使粒子从一个无摩擦半阱转移到另一个半阱的条件,从而得出记录1比特信息的可能性。记录过程被证明是不可逆的;在绕同一轴旋转的情况下,不可能使粒子回到其初始状态。还考虑了施加热噪声的相同旋转双阱系统。研究了一种由旋转腔、可移动隔板以及限制在腔内的粒子构成的最小旋转热机。系统的旋转使隔板移动,从而能够擦除1比特信息。擦除1比特信息是由于作用在隔板上的惯性(离心力)。“最小气体”的等温膨胀预期会产生兰道尔极限。绕同一轴旋转时对“气体”进行压缩是不可能的,需要额外的旋转轴。考虑了记录/擦除信息的可能性与系统对称性之间的相互关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f1b/8871146/b093bc67d198/entropy-24-00168-g001.jpg

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