arXiv Analytics

Sign in

arXiv:cond-mat/0008432AbstractReferencesReviewsResources

Microscopic Theory of Heterogeneity and Non-Exponential Relaxations in Supercooled Liquids

Xiaoyu Xia, Peter G. Wolynes

Published 2000-08-30Version 1

Recent experiments and computer simulations show that supercooled liquids around the glass transition temperature are "dynamically heterogeneous" [1]. Such heterogeneity is expected from the random first order transition theory of the glass transition. Using a microscopic approach based on this theory, we derive a relation between the departure from Debye relaxation as characterized by the $\beta$ value of a stretched exponential response function $\phi(t) =e^{-(t/ \tau_{KWW})^{\beta}}$, and the fragility of the liquid. The $\beta$ value is also predicted to depend on temperature and to vanish as the ideal glass transition is approached at the Kauzmann temperature.

Related articles: Most relevant | Search more
arXiv:cond-mat/0101053 (Published 2001-01-05)
Diffusion and the Mesoscopic Hydrodynamics of Supercooled Liquids
arXiv:cond-mat/0607349 (Published 2006-07-13)
Theory of Structural Glasses and Supercooled Liquids
arXiv:cond-mat/0603809 (Published 2006-03-30)
The connection between non-exponential relaxation and fragility in supercooled liquids