On The Thermalization of One-Dimensional Lattices. I. Microcanonical Ensemble

G.A. Vinogradov, V.D. Lakhno
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Abstract

In numerical simulation of biomacromolecule, the issues of thermalization, i.e., equal distribution of energy over the degrees of freedom, occupy an important place. In this paper we consider some mechanisms of lattice thermalization: Chirikov resonances, wave turbulence and some others. We consider thermalization in a microcanonical ensemble when the system is isolated from external fields and the total energy is conserved. Although microcanonical ensembles are rarely used in practical calculations, however, the basic ideas about the thermalization mechanisms are obtained for these systems. The main attention is paid to the consideration of the lattices thermalization with Fermi-Pasta-Ulam-Tsingou potentials, since the main efforts to understand the basis of thermalization have been made precisely for lattices of this type. The role of solitons and breathers in thermalization is discussed.
论一维晶格的热化。I. 微卡农合集
在生物大分子的数值模拟中,热化问题(即能量在自由度上的平均分配)占有重要地位。在本文中,我们考虑了晶格热化的一些机制:奇里科夫共振、波湍流和其他一些机制。当系统与外部场隔离且总能量守恒时,我们考虑微观经典集合中的热化。尽管微观经典集合很少用于实际计算,但我们还是获得了这些系统热化机制的基本思想。主要关注点是费米-帕斯塔-乌拉姆-钦古电势的晶格热化,因为理解热化基础的主要努力正是针对这种类型的晶格。讨论了孤子和呼吸器在热化中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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