Non-equilbrium Dynamics in Amorphous Si_3B_3N_7
Abstract
We present extensive numerical investigations of the structural relaxation dynamics of a realistic model of the amorphous high-temperature ceramic a-SiBN, probing the mean square displacement (MSD) of the atoms, the bond survival probability (BSP), the average energy, the specific heat, and the two-point energy average. Combining the information from these different sources, we identify a transition temperature K below which the system is no longer ergodic and physical quantities observed over a time show a systematic parametric dependence on the waiting time , or age, elapsed after the quench. The aging dynamics 'stiffens' as the system becomes older, which is similar to the behavior of highly idealized models such as Ising spin-glasses and Lennard-Jones glasses.
Cite
@article{arxiv.cond-mat/0504384,
title = {Non-equilbrium Dynamics in Amorphous Si_3B_3N_7},
author = {A. Hannemann and J. C. Schön and M. Jansen and P. Sibani},
journal= {arXiv preprint arXiv:cond-mat/0504384},
year = {2007}
}
Comments
Journal of Phys. Chem.B in press.Extended version of paper cond-mat/0212245