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自组织系统中相互作用的热力学效率

Thermodynamic Efficiency of Interactions in Self-Organizing Systems.

作者信息

Nigmatullin Ramil, Prokopenko Mikhail

机构信息

Department of Physics and Astronomy, Macquarie University, Sydney, NSW 2109, Australia.

Centre for Complex Systems, Faculty of Engineering, The University of Sydney, Sydney, NSW 2006, Australia.

出版信息

Entropy (Basel). 2021 Jun 16;23(6):757. doi: 10.3390/e23060757.

Abstract

The emergence of global order in complex systems with locally interacting components is most striking at criticality, where small changes in control parameters result in a sudden global reorganization. We study the thermodynamic efficiency of interactions in self-organizing systems, which quantifies the change in the system's order per unit of work carried out on (or extracted from) the system. We analytically derive the thermodynamic efficiency of interactions for the case of quasi-static variations of control parameters in the exactly solvable Curie-Weiss (fully connected) Ising model, and demonstrate that this quantity diverges at the critical point of a second-order phase transition. This divergence is shown for quasi-static perturbations in both control parameters-the external field and the coupling strength. Our analysis formalizes an intuitive understanding of thermodynamic efficiency across diverse self-organizing dynamics in physical, biological, and social domains.

摘要

在具有局部相互作用组件的复杂系统中,全局秩序的出现最显著的情况是在临界点,此时控制参数的微小变化会导致突然的全局重组。我们研究自组织系统中相互作用的热力学效率,它量化了对系统进行(或从系统中提取)的每单位功所导致的系统秩序变化。对于完全可解的居里 - 外斯(全连接)伊辛模型中控制参数的准静态变化情况,我们通过分析得出相互作用的热力学效率,并证明该量在二阶相变的临界点发散。对于控制参数(外场和耦合强度)的准静态扰动,均显示出这种发散。我们的分析使人们对物理、生物和社会领域中各种自组织动力学的热力学效率有了直观理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eea5/8234838/68f76375863b/entropy-23-00757-g001.jpg

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