Brownian motion in granular gases of viscoelastic particles

被引:0
|
作者
A. S. Bodrova
N. V. Brilliantov
A. Yu. Loskutov
机构
[1] Moscow State University,
来源
Journal of Experimental and Theoretical Physics | 2009年 / 109卷
关键词
Brownian Motion; Brownian Particle; Inelastic Collision; Granular Temperature; Restitution Coefficient;
D O I
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中图分类号
学科分类号
摘要
A theory is developed of Brownian motion in granular gases (systems of many macroscopic particles undergoing inelastic collisions), where the energy loss in inelastic collisions is determined by a restitution coefficient ɛ. Whereas previous studies used a simplified model with ɛ = const, the present analysis takes into account the dependence of the restitution coefficient on relative impact velocity. The granular temperature and the Brownian diffusion coefficient are calculated for a granular gas in the homogeneous cooling state and a gas driven by a thermostat force, and their variation with grain mass and size and the restitution coefficient is analyzed. Both equipartition principle and fluctuation-dissipation relations are found to break down. One manifestation of this behavior is a new phenomenon of “relative heating” of Brownian particles at the expense of cooling of the ambient granular gas.
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页码:946 / 953
页数:7
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