Direct Identification of the Glass Transition: Growing Length Scale and the Onset of Plasticity
arXiv:cond-mat/0608305 · doi:10.1209/0295-5075/77/56002
Abstract
Understanding the mechanical properties of glasses remains elusive since the glass transition itself is not fully understood, even in well studied examples of glass formers in two dimensions. In this context we demonstrate here: (i) a direct evidence for a diverging length scale at the glass transition (ii) an identification of the glass transition with the disappearance of fluid-like regions and (iii) the appearance in the glass state of fluid-like regions when mechanical strain is applied. These fluid-like regions are associated with the onset of plasticity in the amorphous solid. The relaxation times which diverge upon the approach to the glass transition are related quantitatively.
5 pages, 5 figs.; 2 figs. omitted, new fig., quasi-crystal discussion omitted, new material on relaxation times
References in corpus (3)
- Direct experimental evidence of a growing length scale accompanying the glass transition
- Athermal Shear-Transformation-Zone Theory of Amorphous Plastic Deformation I: Basic Principles
- Athermal Shear-Transformation-Zone Theory of Amorphous Plastic Deformation II: Analysis of Simulated Amorphous Silicon
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