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Classical Nucleation Theory Description of Active Colloid Assembly

机译:活性胶体组装的经典成核理论描述

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Nonaligning self-propelled particles with purely repulsive excluded volume interactions undergo athermal motility-induced phase separation into a dilute gas and a dense cluster phase. Here, we use enhanced sampling computational methods and analytic theory to examine the kinetics of formation of the dense phase. Despite the intrinsically nonequilibrium nature of the phase transition, we show that the kinetics can be described using an approach analogous to equilibrium classical nucleation theory, governed by an effective free energy of cluster formation with identifiable bulk and surface terms. The theory captures the location of the binodal, nucleation rates as a function of supersaturation, and the cluster size distributions below the binodal, while discrepancies in the metastable region reveal additional physics about the early stages of active crystal formation. The success of the theory shows that a framework similar to equilibrium thermodynamics can be obtained directly from the microdynamics of an active system, and can be used to describe the kinetics of evolution toward nonequilibrium steady states.
机译:具有完全排斥的体积相互作用的非取向自推进颗粒经历由热运动引起的相分离,该相分离为稀气体和致密团簇相。在这里,我们使用增强的采样计算方法和分析理论来检查致密相形成的动力学。尽管相变本质上具有非平衡性质,但我们表明,可以使用类似于平衡经典成核理论的方法来描述动力学,该方法受具有可识别的体积和表面项的有效的簇形成自由能支配。该理论捕获了双节线的位置,成核速率与过饱和度的关系,以及双节线以下的团簇尺寸分布,而亚稳态区域的差异揭示了有关活性晶体形成早期阶段的其他物理现象。该理论的成功表明,可以直接从主动系统的微观动力学中获得类似于平衡热力学的框架,并且可以用来描述向非平衡稳态演化的动力学。

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  • 来源
    《Physical review letters》 |2016年第14期|148002.1-148002.7|共7页
  • 作者单位

    Brandeis Univ, Martin Fisher Sch Phys, Waltham, MA 02453 USA;

    Brandeis Univ, Martin Fisher Sch Phys, Waltham, MA 02453 USA;

    Brandeis Univ, Martin Fisher Sch Phys, Waltham, MA 02453 USA;

    Brandeis Univ, Martin Fisher Sch Phys, Waltham, MA 02453 USA;

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