Driven activation vs. thermal activation

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Published 21 June 2007 Europhysics Letters Association
, , Citation P. Ilg and J.-L. Barrat 2007 EPL 79 26001 DOI 10.1209/0295-5075/79/26001

0295-5075/79/2/26001

Abstract

Activated dynamics in a glassy system undergoing steady shear deformation is studied by numerical simulations. Our results show that the external driving force has a strong influence on the barrier crossing rate, even though the reaction coordinate is only weakly coupled to the nonequilibrium system. This "driven activation" can be quantified by introducing in the Arrhenius expression an effective temperature, which is close to the one determined from the fluctuation-dissipation relation. This conclusion is supported by analytical results for a simplified model system.

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10.1209/0295-5075/79/26001