Predicting the long time dynamic heterogeneity in a supercooled liquid on the basis of short time heterogeneities
Asaph Widmer-Cooper, Peter Harrowell
Abstract
We report that the local Debye-Waller factor in a simulated 2D glass-forming mixture exhibits significant spatial heterogeneities and that these short time fluctuations provide an excellent predictor of the spatial distribution of the long time dynamic propensities [Phys.Rev.Lett. 93, 135701 (2004)]. In contrast, the potential energy per particle of the inherent structure does not correlate well with the spatially distributed dynamics.
Create a lesson
Related papers
Chemical potentials from structure factors: II. Charged multi-component mixtures
Xiaoyu Wang, Roya Savoj, Musahid Ahmed et al.
Asymmetry-controlled resonant transport in a Brownian flashing ratchet
Sudipta Mandal, Dipanjan Chakraborty, Debasish Chaudhuri
Branching stochastic mechanics. I. Clustering and connected correlations within a branching-process representation of the Schrödinger equation
Eric Dumonteil, Benoît Bischoff, Alain Letourneau et al.
Representation Transitions Reveal Predictive Structure in Complex Systems: A Trajectory-Level Reconstruction in a Critical System
Jiaqi Pan
Phase Diagram and Critical Behaviour of the Two-Dimensional Potts Model with Long-Range Quenched Disorder
Rodolfo Rocha, Leticia F. Cugliandolo, Marco Picco
Ornstein-Uhlenbeck Process Driven by Multiple Dichotomous Noises
Silvio Kalaj, Dongho Lee, Enzo Marinari et al.