论文标题

活性胶体的动态重叠浓度量表

Dynamic Overlap Concentration Scale of Active Colloids

论文作者

Mallory, Stewart A., Omar, Ahmad K., Brady, John F.

论文摘要

通过引入动态重叠浓度量表的概念,我们确定了活性胶体的机械性能的通用和以前未报告的特征。这些特征是通过认识到活动粒子轨迹的特征长度(运行长度)引入了新的浓度比例$ ϕ^*$来编码的。对排斥活性布朗颗粒(ABP)的大规模模拟证实,这种新的依赖性浓度是聚合物溶液中重叠浓度的轨迹空间类似物,描述了不同的浓度方案,其中颗粒间碰撞改变了粒子轨迹。使用$ ϕ^*$和与胶体干扰相关的浓度尺度,可以将ABP的机械方程式折叠到一组包含许多先前被忽略的特征的主曲线上。这些特征的包含在定性上改变了对活性胶体行为的先前预测,这是通过计算纯态ABP的悬浮液来证明的。我们的发现表明,动态重叠浓度量表在揭示主动系统和驱动系统的行为方面应该具有很大的实用性。

By introducing the notion of a dynamic overlap concentration scale, we identify universal and previously unreported features of the mechanical properties of active colloids. These features are codified by recognizing that the characteristic length scale of an active particle's trajectory, the run-length, introduces a new concentration scale $ϕ^*$. Large-scale simulations of repulsive active Brownian particles (ABPs) confirm that this new run-length dependent concentration, which is the trajectory-space analogue of the overlap concentration in polymer solutions, delineates distinct concentration regimes in which interparticle collisions alter particle trajectories. Using $ϕ^*$ and concentration scales associated with colloidal jamming, the mechanical equation-of-state for ABPs can be collapsed onto a set of principal curves that contain a number of previously overlooked features. The inclusion of these features qualitatively alters previous predictions of the behavior for active colloids as we demonstrate by computing the spinodal for a suspension of purely-repulsive ABPs. Our findings suggest that dynamic overlap concentration scales should be of great utility in unraveling the behavior of active and driven systems.

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