Disordered Yet Directed: The Emergence of Polar Flocks with Disordered Interactions

Eloise Lardet, Raphaël Voituriez, Silvia Grigolon, Thibault Bertrand
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Abstract

Flocking is a prime example of how robust collective behavior can emerge from simple interaction rules. The flocking transition has been studied extensively since the inception of the original Vicsek model. Here, we introduce a novel self-propelled particle model with quenched disorder in the pairwise alignment interaction couplings akin to a spin glass model. We show that the presence of quenched disorder can promote (rather than destroy) the emergence of global polar order. In particular, we show that our model can display a flocking phase even when the majority of the interaction couplings are anti-aligning. Activity is the key ingredient to reduce frustration in the system as it allows local particle clustering combined with self-organization of the particles to favor neighborhoods with strong cooperative interactions.
无序而有序:无序互动的极地羊群的出现
成群结队是一个典型的例子,说明了简单的交互规则如何产生强大的集体行为。从最初的维克塞克模型开始,人们就对成群过渡进行了广泛的研究。在这里,我们引入了一种新的自推进粒子模型,该模型在成对配准相互作用耦合中具有类似于自旋玻璃模型的淬灭无序性。我们证明,淬火无序的存在可以促进(而不是破坏)全局极性秩序的出现。特别是,我们表明,即使大多数相互作用耦合是反配位的,我们的模型也能显示出成群结队的阶段。活动性是减少系统挫折感的关键因素,因为它允许局部粒子集群与粒子自组织相结合,从而有利于具有强合作性相互作用的邻域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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