Scalar Active Mixtures: The Nonreciprocal Cahn-Hilliard Model

Suropriya Saha, J. Agudo-Canalejo, R. Golestanian
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引用次数: 66

Abstract

Pair interactions between active particles need not follow Newton's third law. In this work we propose a continuum model of pattern formation due to non-reciprocal interaction between multiple species of scalar active matter. The classical Cahn-Hilliard model is minimally modified by supplementing the equilibrium Ginzburg-Landau dynamics with particle number conserving currents which cannot be derived from a free energy, reflecting the microscopic departure from action-reaction symmetry. The strength of the asymmetry in the interaction determines whether the steady state exhibits a macroscopic phase separation or a traveling density wave displaying global polar order. The latter structure, which is equivalent to an active self-propelled smectic phase, coarsens via annihilation of defects, whereas the former structure undergoes Ostwald ripening. The emergence of traveling density waves, which is a clear signature of broken time-reversal symmetry in this active system, is a generic feature of any multi-component mixture with microscopic non-reciprocal interactions.
标量活性混合:非互反Cahn-Hilliard模型
活跃粒子之间的对相互作用不需要遵循牛顿第三定律。在这项工作中,我们提出了一个连续体模型,由于多种标量活性物质之间的非互反相互作用而形成图案。经典的Cahn-Hilliard模型通过用粒子数守恒电流(不能从自由能推导出来)补充平衡的金兹堡-朗道动力学来进行最小程度的修改,反映了微观上对作用-反应对称性的偏离。相互作用中不对称的强度决定了稳态是呈现宏观相分离还是呈现全局极性有序的行密度波。后一种结构相当于一个主动自推进的近晶相,通过缺陷的湮灭而变粗,而前一种结构则经历奥斯特瓦尔德成熟。行密度波的出现是任何具有微观非互反相互作用的多组分混合物的一般特征,是该有源系统中时间反转对称性破缺的明显标志。
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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