arXiv · cond-mat/9801141
Clustering and Non-Gaussian Behavior in Granular Matter
Abstract
We investigate the properties of a model of granular matter consisting of $N$ Brownian particles on a line subject to inelastic mutual collisions. This model displays a genuine thermodynamic limit for the mean values of the energy and the energy dissipation. When the typical relaxation time $τ$ associated with the Brownian process is small compared with the mean collision time $τ_c$ the spatial density is nearly homogeneous and the velocity probability distribution is gaussian. In the opposite limit $τ\gg τ_c$ one has strong spatial clustering, with a fractal distribution of particles, and the velocity probability distribution strongly deviates from the gaussian one.
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A. Puglisi, V. Loreto, U. Marini Bettolo Marconi, A. Petri, A. Vulpiani. 1998-10-06. Clustering and Non-Gaussian Behavior in Granular Matter. https://doi.org/10.1103/physrevlett.81.3848
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