论文标题

有效旋转器的束缚

Unjamming of active rotators

论文作者

Ravazzano, Linda, Lionetti, Maria Chiara, Fumagalli, Maria Rita, Bonfanti, Silvia, Guerra, Roberto, Chepizhko, Oleksandr, La Porta, Caterina A. M., Zapperi, Stefano

论文摘要

活性粒子组件可以根据内部参数(例如密度,粘附强度或自我启动)表现出广泛的有趣动力阶段。在这种情况下,很少研究主动的自我旋转,尽管它们可能与活性物质系统相关,正如我们通过在不同的实验条件下分析reinhardtii藻类的运动所说明的那样。受此示例的启发,我们模拟了具有活性扭矩的交互活动磁盘系统的动力学。在低填充部分时,粘附会导致小旋转簇的形成,类似于藻类应力时观察到的簇。在较高的密度下,该模型显示出由活跃扭矩促进并受到粘附阻碍的无障碍转变的障碍。我们的结果对活动旋转器的动力学动态产生了全面的了解,从而提供了有用的指导来解释旋转可能起作用的细胞系统中的实验结果。

Active particle assemblies can exhibit a wide range of interesting dynamical phases depending on internal parameters such as density, adhesion strength or self-propulsion. Active self-rotations are rarely studied in this context, although they can be relevant for active matter systems, as we illustrate by analyzing the motion of Chlamydomonas reinhardtii algae under different experimental conditions. Inspired by this example, we simulate the dynamics of a system of interacting active disks endowed with active torques. At low packing fractions, adhesion causes the formation of small rotating clusters, resembling those observed when algae are stressed. At higher densities, the model shows a jamming to unjamming transition promoted by active torques and hindered by adhesion. Our results yield a comprehensive picture of the dynamics of active rotators, providing useful guidance to interpret experimental results in cellular systems where rotations might play a role.

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