General Theory of Static Response for Markov Jump Processes

Fuente: arXiv
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Main Authors: Aslyamov, Timur, Esposito, Massimiliano
Format: Preprint
Published: 2024
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author Aslyamov, Timur
Esposito, Massimiliano
author_facet Aslyamov, Timur
Esposito, Massimiliano
contents We consider Markov jump processes on a graph described by a rate matrix that depends on various control parameters. We derive explicit expressions for the static responses of edge currents and steady-state probabilities. We show that they are constrained by the graph topology (i.e. the incidence matrix) by deriving response relations (i.e. linear constraints linking the different responses) and topology-dependent bounds. For unicyclic networks, all scaled current responses are between zero and one and must sum to one. Applying these results to stochastic thermodynamics, we derive explicit expressions for the static response of fundamental currents (which carry the full dissipation) to fundamental thermodynamic forces (which drive the system away from equilibrium).
format Preprint
id arxiv_https___arxiv_org_abs_2402_13990
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle General Theory of Static Response for Markov Jump Processes
Aslyamov, Timur
Esposito, Massimiliano
Statistical Mechanics
Biological Physics
Chemical Physics
We consider Markov jump processes on a graph described by a rate matrix that depends on various control parameters. We derive explicit expressions for the static responses of edge currents and steady-state probabilities. We show that they are constrained by the graph topology (i.e. the incidence matrix) by deriving response relations (i.e. linear constraints linking the different responses) and topology-dependent bounds. For unicyclic networks, all scaled current responses are between zero and one and must sum to one. Applying these results to stochastic thermodynamics, we derive explicit expressions for the static response of fundamental currents (which carry the full dissipation) to fundamental thermodynamic forces (which drive the system away from equilibrium).
title General Theory of Static Response for Markov Jump Processes
topic Statistical Mechanics
Biological Physics
Chemical Physics
url https://arxiv.org/abs/2402.13990