论文标题

违反牛顿第三定律的阶段共存含义

Phase Coexistence Implications of Violating Newton's Third Law

论文作者

Chiu, Yu-Jen, Omar, Ahmad K.

论文摘要

牛顿的第三定律Actio = Reactio,是古典力学的基本陈述。但是,在自然和生活系统中,这一定律似乎常规违反了在非平衡环境中相互作用的组成部分。在这里,我们使用计算机模拟来探索为简单模型系统打破微观相互作用互惠的宏观相行为的影响。我们考虑了有吸引力颗粒的二元混合物,并引入了一个参数,该参数是连续衡量相互作用互惠的程度。在互惠极限中,该物种是无法区分的,并且系统相分为具有不同密度和相同组成的域。发现非肾脏的增加可以推动系统探索丰富的相,包括具有强组成不对称的相和三相共存。这些力引起的许多州,包括行进晶体和液体,都没有平衡类似物。通过映射该模型系统的完整相图并表征这些独特的阶段,我们的发现为了解非互联性如何塑造了生活系统中发现的结构以及如何在合成材料设计中利用它。

Newton's third law, actio = reactio, is a foundational statement of classical mechanics. However, in natural and living systems, this law appears to be routinely violated for constituents interacting in a nonequilibrium environment. Here, we use computer simulations to explore the macroscopic phase behavior implications of breaking microscopic interaction reciprocity for a simple model system. We consider a binary mixture of attractive particles and introduce a parameter which is a continuous measure of the degree to which interaction reciprocity is broken. In the reciprocal limit, the species are indistinguishable and the system phase separates into domains with distinct densities and identical compositions. Increasing nonreciprocity is found to drive the system to explore a rich assortment of phases, including phases with strong composition asymmetries and three-phase coexistence. Many of the states induced by these forces, including traveling crystals and liquids, have no equilibrium analogue. By mapping the complete phase diagram for this model system and characterizing these unique phases, our findings offer a concrete path forward towards understanding how nonreciprocity shapes the structures found in living systems and how this might be leveraged in the design of synthetic materials.

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