Issue 21, 2010

Ultra-long range correlations of the dynamics of jammed soft matter

Abstract

We use photon correlation imaging, a recently introduced space-resolved dynamic light scattering method, to investigate the spatial correlation of the dynamics of a variety of jammed and glassy soft materials. Strikingly, we find that in deeply jammed soft materials spatial correlations of the dynamics are quite generally ultra-long ranged, extending up to the system size, orders of magnitude larger than any relevant structural length scale, such as the particle size, or the mesh size for colloidal gel systems. This has to be contrasted with the case of molecular, colloidal and granular “supercooled” fluids, where spatial correlations of the dynamics extend over a few particles at most. Our findings suggest that ultra long range spatial correlations in the dynamics of a system are directly related to the origin of elasticity. While solid-like systems with entropic elasticity exhibit very moderate correlations, systems with enthalpic elasticity exhibit ultra-long range correlations due to the effective transmission of strains throughout the contact network.

Graphical abstract: Ultra-long range correlations of the dynamics of jammed soft matter

Article information

Article type
Paper
Submitted
24 Mar 2010
Accepted
08 Jul 2010
First published
09 Sep 2010

Soft Matter, 2010,6, 5514-5522

Ultra-long range correlations of the dynamics of jammed soft matter

S. Maccarrone, G. Brambilla, O. Pravaz, A. Duri, M. Ciccotti, J.-M. Fromental, E. Pashkovski, A. Lips, D. Sessoms, V. Trappe and L. Cipelletti, Soft Matter, 2010, 6, 5514 DOI: 10.1039/C0SM00155D

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