Institut für Physik, Johannes Gutenberg-Universität Mainz, Staudingerweg 7-9, 55128 Mainz, Germany.
Soft Matter. 2016 Jun 28;12(24):5257-64. doi: 10.1039/c6sm00485g. Epub 2016 Apr 29.
Suspensions of purely repulsive but self-propelled Brownian particles might undergo phase separation, a phenomenon that strongly resembles the phase separation of passive particles with attractions. Here we employ computer simulations to study the nucleation kinetics and the microscopic pathway active Brownian disks take in two dimensions when quenched from the homogeneous suspension to propulsion speeds beyond the binodal. We find the same qualitative behavior for the nucleation rate as a function of density as for a passive suspension undergoing liquid-vapor separation, suggesting that the scenario of an effective free energy also extends to the kinetics of phase separation. We study the transition in more detail through a committor analysis and find that transition states are best described by a combination of cluster size and the radial polarization of particles in the cluster.
纯排斥但自推进布朗粒子的悬浮液可能会发生相分离,这种现象与具有吸引力的被动粒子的相分离非常相似。在这里,我们使用计算机模拟来研究在从均匀悬浮液淬火到超过双节点的推进速度时,二维中的活性布朗圆盘的成核动力学和微观途径。我们发现成核速率作为密度的函数的定性行为与经历液-气相分离的被动悬浮液相同,这表明有效自由能的情况也扩展到了相分离的动力学。我们通过承诺分析更详细地研究了转变,发现过渡态最好用簇大小和簇中粒子的径向极化的组合来描述。