论文标题
剪切的封闭微观物质的动态模式
Dynamical modes of sheared confined microscale matter
论文作者
论文摘要
基于(过度引导的)Stokesian动力学模拟和视频显微镜实验,我们研究了剪切的胶体群集的非平衡动力学,该动力学仅限于二维磁盘。实验系统由顺磁和非磁聚苯乙烯颗粒的混合物组成,这些混合物由时间共享光学镊子保存在磁盘中。顺磁性颗粒位于磁盘的中心,并由诱导磁性扭矩的外部旋转磁场驱动。我们通过监测每个环的平均角速度来识别两个不同的稳态。第一个的特征是罕见的滑动事件,其中内环从外环暂时depin,这是由光学陷阱集保持静态的。对于第二个状态,我们发现平均角速度的双重性,可以从对粒子轨迹中滑动事件的分析中理解。我们计算粒子的等待时间和跳跃时间分布,并估计滑动之间的时间尺度,这也由平均平方方位角位移中的平台反映。应力张量的成分进一步反映了动力学跃迁,揭示了剪切薄的行为以及剪切应力过冲。最后,我们简要讨论在随机热力学的背景下观察到的过渡,以及它如何打开该领域的未来方向。
Based on (overdamped) Stokesian dynamics simulations and video microscopy experiments, we study the non equilibrium dynamics of a sheared colloidal cluster, which is confined to a two-dimensional disk. The experimental system is composed of a mixture of paramagnetic and non magnetic polystyrene particles, which are held in the disk by time shared optical tweezers. The paramagnetic particles are located at the center of the disk and are actuated by an external, rotating magnetic field that induces a magnetic torque. We identify two different steady states by monitoring the mean angular velocities per ring. The first one is characterized by rare slip events, where the inner rings momentarily depin from the outer ring, which is kept static by the set of optical traps. For the second state, we find a bistability of the mean angular velocities, which can be understood from the analysis of the slip events in the particle trajectories. We calculate the particle waiting- and jumping time distributions and estimate a time scale between slips, which is also reflected by a plateau in the mean squared azimuthal displacement. The dynamical transition is further reflected by the components of the stress tensor, revealing a shear-thinning behavior as well as shear stress overshoots. Finally, we briefly discuss the observed transition in the context of stochastic thermodynamics and how it may open future directions in this field.