首页> 外文期刊>Journal of Statistical Physics >Flux Large Deviations of Independent and Reacting Particle Systems, with Implications for Macroscopic Fluctuation Theory
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Flux Large Deviations of Independent and Reacting Particle Systems, with Implications for Macroscopic Fluctuation Theory

机译:Flux独立和反应颗粒系统的偏差,对宏观波动理论的影响

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摘要

We consider a system of independent particles and a system of reacting particles on a discrete state space. For the independent case, we rigorously prove a dynamic large-deviation principle for the empirical measure-integrated flux pair, taking the one-way fluxes rather than net fluxes into account. We prove the large deviations under deterministic initial conditions, and under random initial conditions satisfying a large-deviation principle. We formally calculate similar one-way flux large deviations for the more general reacting particles case. Next, we use these results to derive a number of principles from Macroscopic Fluctuation Theory like time-reversal principles and generalised gradient structures.
机译:我们考虑一个独立颗粒的系统和在离散状态空间上反应颗粒的系统。 对于独立的情况,我们严格证明了经验措施集成磁通对的动态大偏差原理,以单向通量而不是净助焊剂考虑。 我们证明了确定性初始条件下的大偏差,并且在满足大偏差原理的随机初始条件下。 我们正式计算出类似的单向助焊剂对于更一般的反应颗粒壳体的偏差。 接下来,我们使用这些结果从宏观波动理论中得出多种原则,如时间逆转原则和广义梯度结构。

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