Nonequilibrium thermodynamic signatures of collective dynamical states around chimera in a chemical reaction network

Fuente: arXiv
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Main Authors: Kumar, Premashis, Gangopadhyay, Gautam
Format: Preprint
Published: 2023
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author Kumar, Premashis
Gangopadhyay, Gautam
author_facet Kumar, Premashis
Gangopadhyay, Gautam
contents Different dynamical states ranging from coherent, incoherent to chimera, multichimera, and related transitions are addressed in a globally coupled nonlinear continuum chemical oscillator system by implementing a modified complex Ginzburg-Landau equation. Besides dynamical identifications of observed states using standard qualitative metrics, we systematically acquire nonequilibrium thermodynamic characterizations of these states obtained via coupling parameters. The nonconservative work profiles in collective dynamics qualitatively reflect the time-integrated concentration of the activator, and the majority of the nonconservative work contributes to the entropy production over the spatial dimension. It is illustrated that the evolution of spatial entropy production and semigrand Gibbs free energy profiles associated with each state are connected yet completely out of phase, and these thermodynamic signatures are extensively elaborated to shed light on the exclusiveness and similarities of these states. Moreover, a relationship between the proper nonequilibrium thermodynamic potential and the variance of activator concentration is established by exhibiting both quantitative and qualitative similarities between a Fano factor-like entity, derived from the activator concentration, and the Kullback-Leibler divergence associated with the transition from a nonequilibrium homogeneous state to an inhomogeneous state. Quantifying the thermodynamic costs for collective dynamical states would aid in efficiently controlling, manipulating, and sustaining such states to explore the real-world relevance and applications of these states.
format Preprint
id arxiv_https___arxiv_org_abs_2308_02857
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Nonequilibrium thermodynamic signatures of collective dynamical states around chimera in a chemical reaction network
Kumar, Premashis
Gangopadhyay, Gautam
Statistical Mechanics
Chaotic Dynamics
Pattern Formation and Solitons
Chemical Physics
Computational Physics
Different dynamical states ranging from coherent, incoherent to chimera, multichimera, and related transitions are addressed in a globally coupled nonlinear continuum chemical oscillator system by implementing a modified complex Ginzburg-Landau equation. Besides dynamical identifications of observed states using standard qualitative metrics, we systematically acquire nonequilibrium thermodynamic characterizations of these states obtained via coupling parameters. The nonconservative work profiles in collective dynamics qualitatively reflect the time-integrated concentration of the activator, and the majority of the nonconservative work contributes to the entropy production over the spatial dimension. It is illustrated that the evolution of spatial entropy production and semigrand Gibbs free energy profiles associated with each state are connected yet completely out of phase, and these thermodynamic signatures are extensively elaborated to shed light on the exclusiveness and similarities of these states. Moreover, a relationship between the proper nonequilibrium thermodynamic potential and the variance of activator concentration is established by exhibiting both quantitative and qualitative similarities between a Fano factor-like entity, derived from the activator concentration, and the Kullback-Leibler divergence associated with the transition from a nonequilibrium homogeneous state to an inhomogeneous state. Quantifying the thermodynamic costs for collective dynamical states would aid in efficiently controlling, manipulating, and sustaining such states to explore the real-world relevance and applications of these states.
title Nonequilibrium thermodynamic signatures of collective dynamical states around chimera in a chemical reaction network
topic Statistical Mechanics
Chaotic Dynamics
Pattern Formation and Solitons
Chemical Physics
Computational Physics
url https://arxiv.org/abs/2308.02857