Force distributions near the jamming and glass transitions
arXiv:cond-mat/0005035 · doi:10.1103/PhysRevLett.86.111
Abstract
We calculate the distribution of interparticle normal forces near the glass and jamming transitions in model supercooled liquids and foams, respectively. develops a peak that appears near the glass or jamming transitions, whose height increases with decreasing temperature, decreasing shear stress and increasing packing density. A similar shape of was observed in experiments on static granular packings. We propose that the appearance of this peak signals the development of a yield stress. The sensitivity of the peak to temperature, shear stress and density lends credence to the recently proposed generalized jamming phase diagram.
4 pages, 3 postscript figures;Version 3 replaces figure 1 and removes figure 2 from version 1. Significant rewording of version 1 to emphasize the formation of peak in P(F) when these systems jam along five different routes of the recently proposed jamming phase diagram. Version 2 displayed the incorrect abstract