Unifying renormalized and bare viscosity in two-dimensional molecular dynamics simulations
Statistical Mechanics
2026-03-06 v6
Abstract
Fluctuating hydrodynamics provides a framework connecting mesoscopic fluctuations with macroscopic transport behavior. To bridge mesoscopic and macroscopic transport from microscopic dynamics, we introduce a wavenumber-dependent viscosity, defined via the equilibrium correlation of time-averaged Fourier components of the fine-grained shear stress field. Two-dimensional molecular dynamics simulations reveal its small-wavenumber divergence characteristic of the renormalized viscosity, while its large-wavenumber behavior determines the bare viscosity, thereby establishing a link between mesoscopic and macroscopic transport based on microscopic dynamics.
Keywords
Cite
@article{arxiv.2506.16002,
title = {Unifying renormalized and bare viscosity in two-dimensional molecular dynamics simulations},
author = {Kazuma Yokota and Masato Itami and Shin-ichi Sasa},
journal= {arXiv preprint arXiv:2506.16002},
year = {2026}
}
Comments
10 pages, 7 figures