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Universality behaviour in ‘ideal’ dynamical arrest transitions of a lattice glass model

Author

Listed:
  • Dawson, Kenneth A
  • Lawlor, Aonghus
  • de Gregorio, Paolo
  • McCullagh, Gavin D
  • Zaccarelli, Emanuela
  • Tartaglia, Piero

Abstract

Using dynamically available volume (DAV) as an order parameter, we study the ideal dynamical arrest for some simple lattice glass models. For these models the dynamically available volume is expressed as holes, or vacant sites into which particles can move. We find that on approach to the arrest the holes, which are the only mediators of transport, become increasingly rare. Near the arrest, dynamical quantities can be expanded in a series of hole density, in which the leading term is found to quadratic, as opposed to unfrustrated systems which have a linear dependence. Dynamical quantities for the models we have studied show universal behaviour when expressed in terms of the hole density. The dynamically available volume is shown to be a useful characterisation of the slow aging in lattice glasses.

Suggested Citation

  • Dawson, Kenneth A & Lawlor, Aonghus & de Gregorio, Paolo & McCullagh, Gavin D & Zaccarelli, Emanuela & Tartaglia, Piero, 2002. "Universality behaviour in ‘ideal’ dynamical arrest transitions of a lattice glass model," Physica A: Statistical Mechanics and its Applications, Elsevier, vol. 316(1), pages 115-134.
  • Handle: RePEc:eee:phsmap:v:316:y:2002:i:1:p:115-134
    DOI: 10.1016/S0378-4371(02)01210-4
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