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Entropy production and large deviation function for systems with microscopically irreversible transitions.

Bappa, Saha and Sutapa, Mukherji (2016) Entropy production and large deviation function for systems with microscopically irreversible transitions. Journal of Statistical Mechanics- Theory and Experiment. pp. 1-11.

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Abstract

We obtain the large deviation function for entropy production of the medium and its distribution function for two-site totally asymmetric simple exclusion process (TASEP) and three-state unicyclic network. Since such systems are described through microscopic irreversible transitions, we obtain time-dependent transition rates by sampling the states of these systems at a regular short time interval � . These transition rates are used to derive the large deviation function for the entropy production in the nonequilibrium steady state and its asymptotic distribution function. The shapes of the large deviation function and the distribution function depend on the value of the mean entropy production rate which has a non-trivial dependence on the particle injection and withdrawal rates in case of TASEP. Further, it is argued that in case of a TASEP, the distribution function tends to be like a Poisson distribution for smaller values of particle injection and withdrawal rates.

Item Type: Article
Uncontrolled Keywords: irreversible transitions
Subjects: 500 Natural Sciences and Mathematics > 03 Physics
Divisions: Protein Chemistry and Technology
Depositing User: Food Sci. & Technol. Information Services
Date Deposited: 30 Jun 2017 06:47
Last Modified: 26 Dec 2017 09:59
URI: http://ir.cftri.com/id/eprint/12714

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