On polydispersity and the hard-sphere glass transition
Soft Condensed Matter
2013-10-21 v1
Abstract
We simulate the dynamics of polydisperse hard spheres at high packing fractions, , with an experimentally-realistic particle size distribution (PSD) and other commonly-used PSDs such as gaussian or top hat. We find that the mode of kinetic arrest depends on the PSD's shape and not only on its variance. For the experimentally-realistic PSD, the largest particles undergo an ideal glass transition at while the smallest particles remain mobile. Such species-specific localisation was previously observed only in asymmetric binary mixtures. Our findings suggest that the recent observation of ergodic behavior up to in a hard-sphere system is not evidence for activated dynamics, but an effect of polydispersity.
Keywords
Cite
@article{arxiv.1310.4876,
title = {On polydispersity and the hard-sphere glass transition},
author = {Emanuela Zaccarelli and Siobhan M. Liddle and Wilson C. K. Poon},
journal= {arXiv preprint arXiv:1310.4876},
year = {2013}
}