A molecular dynamics simulation of thermalization of crystalline lattice with harmonic interaction

Fuente: arXiv
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Main Author: Yao, Zhenwei
Format: Preprint
Published: 2026
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author Yao, Zhenwei
author_facet Yao, Zhenwei
contents Understanding the realization of thermal equilibrium through the thermalization process in a many-body system is a fundamental and complex scientific question, bridging thermodynamics and classical dynamics and connecting to a host of physical phenomena, such as mechanical instabilities in a thermal environment. In this work, based on the harmonic lattice model, we investigate the thermalization process in both velocity and coordinate spaces, by examining microscopic dynamics on the atomic level. We show the distinct relaxation rates of the transverse and longitudinal components of the velocity, reveal the power law governing the nonlinear proliferation of dominant frequencies, and observe the concurrent rapid proliferations of frequencies and topological defects. We also show that the lattice system's persistent out-of-plane deformations exhibit two-stage fluctuation behaviors, characterized by distinct power laws of fractional exponents and associated with the broken up-down symmetry. This work demonstrates the rich dynamics underlying the thermalization process, and advances our understanding on the dynamical adaptations of many-body systems to external disturbances.
format Preprint
id arxiv_https___arxiv_org_abs_2604_03913
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A molecular dynamics simulation of thermalization of crystalline lattice with harmonic interaction
Yao, Zhenwei
Statistical Mechanics
Materials Science
Soft Condensed Matter
Classical Physics
Computational Physics
Understanding the realization of thermal equilibrium through the thermalization process in a many-body system is a fundamental and complex scientific question, bridging thermodynamics and classical dynamics and connecting to a host of physical phenomena, such as mechanical instabilities in a thermal environment. In this work, based on the harmonic lattice model, we investigate the thermalization process in both velocity and coordinate spaces, by examining microscopic dynamics on the atomic level. We show the distinct relaxation rates of the transverse and longitudinal components of the velocity, reveal the power law governing the nonlinear proliferation of dominant frequencies, and observe the concurrent rapid proliferations of frequencies and topological defects. We also show that the lattice system's persistent out-of-plane deformations exhibit two-stage fluctuation behaviors, characterized by distinct power laws of fractional exponents and associated with the broken up-down symmetry. This work demonstrates the rich dynamics underlying the thermalization process, and advances our understanding on the dynamical adaptations of many-body systems to external disturbances.
title A molecular dynamics simulation of thermalization of crystalline lattice with harmonic interaction
topic Statistical Mechanics
Materials Science
Soft Condensed Matter
Classical Physics
Computational Physics
url https://arxiv.org/abs/2604.03913