论文标题
熵产生及其在活性晶格气体中的较大偏差
Entropy production and its large deviations in an active lattice gas
论文作者
论文摘要
活动系统的特征是稳定状态下连续产生熵。我们研究基于晶格的相互作用活性粒子模型中的熵产生的统计数据,该模型具有运动性诱导的相分离。利用该模型的确切流体动力学的最新表述,我们在典型和非典型(偏见)方面为其熵生产统计数据提供了分析结果。这补充了先前关于距离活性粒子模型中熵产生的较大偏差统计的研究,这些粒子模型只能在数值上解决。我们的分析发现了一个意外复杂的相图,在无偏置系统处于均匀状态的参数状态下,出现了五个不同的阶段(在偏见下)。值得注意的是,我们发现一阶和二阶非平衡相变曲线在偏置诱导的三智度点处的同时发生,这在先前对活动系统的研究中尚未报道。
Active systems are characterized by a continuous production of entropy at steady state. We study the statistics of entropy production within a lattice-based model of interacting active particles that is capable of motility-induced phase separation. Exploiting a recent formulation of the exact fluctuating hydrodynamics for this model, we provide analytical results for its entropy production statistics in both typical and atypical (biased) regimes. This complements previous studies of the large deviation statistics of entropy production in off-lattice active particle models that could only be addressed numerically. Our analysis uncovers an unexpectedly intricate phase diagram, with five different phases arising (under bias) within the parameter regime where the unbiased system is in its homogeneous state. Notably, we find the concurrence of first order and second order nonequilibrium phase transition curves at a bias-induced tricritical point, a feature not yet reported in previous studies of active systems.