Glass elasticity from particle trajectories
Soft Condensed Matter
2012-10-26 v4
Abstract
Using positional data from video-microscopy of a two-dimensional colloidal system and from simulations of hard discs we determine the wave-vector-dependent normal mode spring constants in the supercooled fluid and glassy state, respectively. The emergence of rigidity and the existence of a displacement field in amorphous solids is clarified. Continuum elastic theory is used in the limit of long wavelengths to analyze the bulk and shear modulus of this amorphous system as a function of temperature. The onset of a finite static shear modulus upon cooling marks the fluid/solid transition. This provides an opportunity to determine the glass transition temperature in an intuitive and precise way.
Keywords
Cite
@article{arxiv.1108.2636,
title = {Glass elasticity from particle trajectories},
author = {Christian L. Klix and Florian Ebert and Fabian Weysser and Matthias Fuchs and Georg Maret and Peter Keim},
journal= {arXiv preprint arXiv:1108.2636},
year = {2012}
}
Comments
7 pages, 5 figures