论文标题
羊群微观模型中不可逆性的签名
Signatures of irreversibility in microscopic models of flocking
论文作者
论文摘要
$ d = 2 $植入是一种真正的非平衡现象,不可逆性是必不可少的成分。我们研究了一类最小植入模型,其唯一的不可逆性来源是自我宣传,并使用熵生产率(EPR)来量化其相位图跨越平衡的偏离。 EPR在订单级过渡的附近是最大的,其中相互作用网络的改组很快。我们表明,不可逆性的特征是在羊群微骨的稳态分布中以不对称的形式出现。它们是作为时间逆转对称性破裂的后果,而与相互作用的细节无关。在公制成对力的情况下,它们在对颗粒对的分布中减少到局部不对称。这项研究表明,可能使用对不对称的既可以量化均衡的偏离,又可以学习有关从数据中对齐相互作用势的相关信息。
Flocking in $d=2$ is a genuine non-equilibrium phenomenon for which irreversibility is an essential ingredient. We study a class of minimal flocking models whose only source of irreversibility is self-propulsion and use the entropy production rate (EPR) to quantify the departure from equilibrium across their phase diagrams. The EPR is maximal in the vicinity of the order-disorder transition, where reshuffling of the interaction network is fast. We show that signatures of irreversibility come in the form of asymmetries in the steady state distribution of the flock's microstates. They occur as consequences of the time reversal symmetry breaking in the considered self-propelled systems, independently of the interaction details. In the case of metric pairwise forces, they reduce to local asymmetries in the distribution of pairs of particles. This study suggests a possible use of pair asymmetries both to quantify the departure from equilibrium and to learn relevant information about aligning interaction potentials from data.