Thermodynamic aspects of information transfer in complex dynamical systems

Carlo Cafaro, Sean Alan Ali, and Adom Giffin
Phys. Rev. E 93, 022114 – Published 8 February 2016

Abstract

From the Horowitz-Esposito stochastic thermodynamical description of information flows in dynamical systems [J. M. Horowitz and M. Esposito, Phys. Rev. X 4, 031015 (2014)], it is known that while the second law of thermodynamics is satisfied by a joint system, the entropic balance for the subsystems is adjusted by a term related to the mutual information exchange rate between the two subsystems. In this article, we present a quantitative discussion of the conceptual link between the Horowitz-Esposito analysis and the Liang-Kleeman work on information transfer between dynamical system components [X. S. Liang and R. Kleeman, Phys. Rev. Lett. 95, 244101 (2005)]. In particular, the entropic balance arguments employed in the two approaches are compared. Notwithstanding all differences between the two formalisms, our work strengthens the Liang-Kleeman heuristic balance reasoning by showing its formal analogy with the recent Horowitz-Esposito thermodynamic balance arguments.

  • Received 29 September 2015
  • Revised 28 December 2015

DOI:https://doi.org/10.1103/PhysRevE.93.022114

©2016 American Physical Society

Physics Subject Headings (PhySH)

Statistical Physics & Thermodynamics

Authors & Affiliations

Carlo Cafaro1, Sean Alan Ali2, and Adom Giffin3

  • 1SUNY Polytechnic Institute, 12203 Albany, New York, USA
  • 2Albany College of Pharmacy and Health Sciences, 12208 Albany, New York, USA
  • 3Clarkson University, 13699 Potsdam, New York, USA

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Issue

Vol. 93, Iss. 2 — February 2016

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