Volume 123, 2003

The nature of the colloidal ‘glass’ transition

Abstract

The dynamically arrested state of matter is discussed in the context of athermal systems, such as the hard sphere colloidal arrest. We believe that the singular dynamical behaviour near arrest expressed, for example, in how the diffusion constant vanishes may be ‘universal’, in a sense to be discussed in the paper. Based on this we argue the merits of studying the problem with simple lattice models. This, by analogy with the the critical point of the Ising model, should lead us to clarify the questions, and begin the program of establishing the degree of universality to be expected. We deal only with ‘ideal’ athermal dynamical arrest transitions, such as those found for hard sphere systems. However, it is argued that dynamically available volume (DAV) is the relevant order parameter of the transition, and that universal mechanisms may be well expressed in terms of DAV. For simple lattice models we give examples of simple laws that emerge near the dynamical arrest, emphasising the idea of a near-ideal gas of ‘holes’, interacting to give the power law diffusion constant scaling near the arrest. We also seek to open the discussion of the possibility of an underlying weak coupling theory of the dynamical arrest transition, based on DAV.

Article information

Article type
Paper
Submitted
14 May 2002
Accepted
10 Jun 2002
First published
20 Nov 2002

Faraday Discuss., 2003,123, 13-26

The nature of the colloidal ‘glass’ transition

K. A. Dawson, A. Lawlor, P. DeGregorio, G. D. McCullagh, E. Zaccarelli, G. Foffi and P. Tartaglia, Faraday Discuss., 2003, 123, 13 DOI: 10.1039/B204624E

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