Dynamic heterogeneity in an orientational glass
Abstract
Family of compounds CBrCl has been proven helpful in unraveling microscopic mechanisms responsible of glassy behavior. Some of the family members show translational ordered phases with minimal disorder which appears to reveal glassy features, thus deserving special attention in the search for universal glass anomalies. In this work, we studied CBrCl dynamics by performing extensive molecular dynamics simulations. Molecules of this compound perform reorientational discrete jumps, where the atoms exchange equivalent positions among each other revealing a cage-orientational jump motion fully comparable to the cage-rototranslational jump motion in supercooled liquids. Correlation times were calculated from rotational autocorrelation functions showing good agreement with previous reported dielectric results. From mean waiting and persistence times calculated directly from trajectory results, we are able to explain which microscopic mechanisms lead to characteristic times associated with and -relaxation times measured experimentally. We found that two nonequivalent groups of molecules have a longer characteristic time than the other two nonequivalent groups, both of them belonging to the asymmetric unit of the monoclinic (C2/c) lattice.
Cite
@article{arxiv.1709.07733,
title = {Dynamic heterogeneity in an orientational glass},
author = {Nirvana B. Caballero and Mariano Zuriaga and Josep Lluis Tamarit and Pablo Serra},
journal= {arXiv preprint arXiv:1709.07733},
year = {2017}
}