Orientational Ordering in Athermally Sheared, Aspherical, Frictionless Particles
Abstract
We numerically simulate the uniform athermal shearing of bidisperse, frictionless, two dimensional spherocylinders and three dimensional prolate ellipsoids. We focus on the orientational ordering of particles as an asphericity parameter and particles approach spherical. We find that the nematic order parameter is non-monotonic in the packing fraction , and that as stays finite at jamming and above. The approach to spherical particles thus appears to be singular. We also find that sheared particles continue to rotate above jamming, and that particle contacts preferentially lie along the narrowest width of the particles, even as .
Cite
@article{arxiv.1806.01739,
title = {Orientational Ordering in Athermally Sheared, Aspherical, Frictionless Particles},
author = {Theodore Marschall and Yann-Edwin Keta and Peter Olsson and S. Teitel},
journal= {arXiv preprint arXiv:1806.01739},
year = {2019}
}
Comments
updated to published version with greatly expanded supplemental material: 5 pages, 5 figures, plus supplemental material of 7 pages, 11 figures