Growing Length Scales and Their Relation to Timescales in Glass-Forming Liquids

Author:

Karmakar Smarajit1,Dasgupta Chandan2,Sastry Srikanth13

Affiliation:

1. TIFR Centre for Interdisciplinary Sciences, Narsingi, Hyderabad 500075, India

2. Centre for Condensed Matter Theory, Department of Physics, Indian Institute of Science, Bangalore 560012, India;

3. Theoretical Sciences Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Jakkur Campus, Bangalore 560064, India

Abstract

The question of whether the dramatic slowing down of the dynamics of glass-forming liquids near the structural glass transition is caused by the growth of one or more correlation lengths has received much attention in recent years. Several proposals have been made for both static and dynamic length scales that may be responsible for the growth of timescales as the glass transition is approached. These proposals are critically examined with emphasis on the dynamic length scale associated with spatial heterogeneity of local dynamics and the static point-to-set or mosaic length scale of the random first-order transition theory of equilibrium glass transition. Available results for these length scales, obtained mostly from simulations, are summarized, and the relation of the growth of timescales near the glass transition with the growth of these length scales is examined. Some of the outstanding questions about length scales in glass-forming liquids are discussed, and studies in which these questions may be addressed are suggested.

Publisher

Annual Reviews

Subject

Condensed Matter Physics,General Materials Science

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