Variational Structures Beyond Gradient Flows: a Macroscopic Fluctuation-Theory Perspective

IF 1.3 3区 物理与天体物理 Q3 PHYSICS, MATHEMATICAL Journal of Statistical Physics Pub Date : 2024-01-29 DOI:10.1007/s10955-024-03233-8
Robert I. A. Patterson, D. R. Michiel Renger, Upanshu Sharma
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Abstract

Macroscopic equations arising out of stochastic particle systems in detailed balance (called dissipative systems or gradient flows) have a natural variational structure, which can be derived from the large-deviation rate functional for the density of the particle system. While large deviations can be studied in considerable generality, these variational structures are often restricted to systems in detailed balance. Using insights from macroscopic fluctuation theory, in this work we aim to generalise this variational connection beyond dissipative systems by augmenting densities with fluxes, which encode non-dissipative effects. Our main contribution is an abstract theory, which for a given flux-density cost and a quasipotential, provides a decomposition into dissipative and non-dissipative components and a generalised orthogonality relation between them. We then apply this abstract theory to various stochastic particle systems—independent copies of jump processes, zero-range processes, chemical-reaction networks in complex balance and lattice-gas models—without assuming detailed balance. For macroscopic equations arising out of these particle systems, we derive new variational formulations that generalise the classical gradient-flow formulation.

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梯度流之外的变分结构:宏观波动理论视角
由详细平衡的随机粒子系统(称为耗散系统或梯度流)产生的宏观方程具有天然的变分结构,这种结构可以从粒子系统密度的大偏差率函数中推导出来。虽然可以对大偏差进行相当广泛的研究,但这些变异结构通常仅限于详细平衡系统。在这项工作中,我们利用宏观波动理论的洞察力,旨在通过用通量增强密度(通量编码非耗散效应),将这种变异联系推广到耗散系统之外。我们的主要贡献是提出了一种抽象理论,对于给定的通量-密度成本和准位势,它提供了一种分解为耗散和非耗散成分的方法,以及它们之间的广义正交关系。然后,我们将这一抽象理论应用于各种随机粒子系统--跳跃过程的独立副本、零程过程、复杂平衡中的化学反应网络和晶格气体模型--而无需假设详细的平衡。对于这些粒子系统产生的宏观方程,我们推导出了新的变分公式,对经典的梯度流公式进行了概括。
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来源期刊
Journal of Statistical Physics
Journal of Statistical Physics 物理-物理:数学物理
CiteScore
3.10
自引率
12.50%
发文量
152
审稿时长
3-6 weeks
期刊介绍: The Journal of Statistical Physics publishes original and invited review papers in all areas of statistical physics as well as in related fields concerned with collective phenomena in physical systems.
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