Beyond Local Detailed Balance: Microscopic Rates Reshape Nonequilibrium Phase Behavior

Fuente: arXiv
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Main Authors: Kanazawa, Takahiro, Kawaguchi, Kyogo, Adachi, Kyosuke
Format: Preprint
Published: 2026
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_version_ 1866914599099432960
author Kanazawa, Takahiro
Kawaguchi, Kyogo
Adachi, Kyosuke
author_facet Kanazawa, Takahiro
Kawaguchi, Kyogo
Adachi, Kyosuke
contents Local detailed balance (LDB) is a central guiding principle for modeling nonequilibrium stochastic dynamics, yet it only constrains the ratio of forward and backward transition rates and does not fix the steady state. Although the functional form of rates under the same LDB has been shown to affect correlation properties in weakly interacting systems, whether it can reshape phase behavior in strongly interacting systems remains unclear. Here, for a two-dimensional driven lattice gas with attractive nearest-neighbor interactions, we consider hopping rates with a parameter that preserves the same LDB but tunes asymmetry along the driving force. We find that this parameter controls qualitative phase behavior: in the homogeneous phase, it reverses the sign of the structure-factor discontinuity and hence the anisotropy in long-range density correlations; in the phase-separated regime, it switches the orientation of anisotropic patterns and their long-time stability. Both effects are coherently captured by an approximate fluctuating hydrodynamic equation. The results demonstrate that, in contrast to equilibrium systems, nonequilibrium phase behavior depends on specific dynamical rules even when following the same LDB.
format Preprint
id arxiv_https___arxiv_org_abs_2605_25406
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Beyond Local Detailed Balance: Microscopic Rates Reshape Nonequilibrium Phase Behavior
Kanazawa, Takahiro
Kawaguchi, Kyogo
Adachi, Kyosuke
Statistical Mechanics
Soft Condensed Matter
Local detailed balance (LDB) is a central guiding principle for modeling nonequilibrium stochastic dynamics, yet it only constrains the ratio of forward and backward transition rates and does not fix the steady state. Although the functional form of rates under the same LDB has been shown to affect correlation properties in weakly interacting systems, whether it can reshape phase behavior in strongly interacting systems remains unclear. Here, for a two-dimensional driven lattice gas with attractive nearest-neighbor interactions, we consider hopping rates with a parameter that preserves the same LDB but tunes asymmetry along the driving force. We find that this parameter controls qualitative phase behavior: in the homogeneous phase, it reverses the sign of the structure-factor discontinuity and hence the anisotropy in long-range density correlations; in the phase-separated regime, it switches the orientation of anisotropic patterns and their long-time stability. Both effects are coherently captured by an approximate fluctuating hydrodynamic equation. The results demonstrate that, in contrast to equilibrium systems, nonequilibrium phase behavior depends on specific dynamical rules even when following the same LDB.
title Beyond Local Detailed Balance: Microscopic Rates Reshape Nonequilibrium Phase Behavior
topic Statistical Mechanics
Soft Condensed Matter
url https://arxiv.org/abs/2605.25406