Master equation approach to reversible and conservative discrete systems

Felipe Urbina and Sergio Rica
Phys. Rev. E 94, 062140 – Published 28 December 2016

Abstract

A master equation approach is applied to a reversible and conservative cellular automaton model (Q2R). The Q2R model is a dynamical variation of the Ising model for ferromagnetism that possesses quite a rich and complex dynamics. The configuration space is composed of a huge number of cycles with exponentially long periods. Following Nicolis and Nicolis [G. Nicolis and C. Nicolis, Phys. Rev. A 38, 427 (1988)], a coarse-graining approach is applied to the time series of the total magnetization, leading to a master equation that governs the macroscopic irreversible dynamics of the Q2R automata. The methodology is replicated for various lattice sizes. In the case of small systems, we show that the master equation leads to a tractable probability transfer matrix of moderate size, which provides a master equation for a coarse-grained probability distribution. The method is validated and some explicit examples are discussed.

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  • Received 9 August 2016

DOI:https://doi.org/10.1103/PhysRevE.94.062140

©2016 American Physical Society

Physics Subject Headings (PhySH)

Statistical Physics & ThermodynamicsNonlinear Dynamics

Authors & Affiliations

Felipe Urbina and Sergio Rica

  • Facultad de Ingeniería y Ciencias and UAI Physics Center, Universidad Adolfo Ibáñez, Avenida Diagonal las Torres 2640, Peñalolén, Santiago, Chile

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Issue

Vol. 94, Iss. 6 — December 2016

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