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Collective Oscillations in Irreversible Coagulation Driven by Monomer Inputs and Large-Cluster Outputs

机译:单体输入和大集群输出驱动的不可逆凝结中的集体振荡

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We describe collective oscillatory behavior in the kinetics of irreversible coagulation with a constant input of monomers and removal of large clusters. For a broad class of collision rates, this system reaches a nonequilibrium stationary state at large times and the cluster size distribution tends to a universal form characterized by a constant flux of mass through the space of cluster sizes. Universality, in this context, means that the stationary state becomes independent of the cutoff as the cutoff grows. This universality is lost, however, if the aggregation rate between large and small clusters increases sufficiently steeply as a function of cluster sizes. We identify a transition to a regime in which the stationary state vanishes as the cutoff grows. This nonuniversal stationary state becomes unstable as the cutoff is increased. It undergoes a Hopf bifurcation after which the stationary state is replaced by persistent and periodic collective oscillations. These oscillations, which bear some similarities to relaxation oscillations in excitable media, carry pulses of mass through the space of cluster sizes such that the average mass flux through any cluster size remains constant. Universality is partially restored in the sense that the scaling of the period and amplitude of oscillation is inherited from the dynamical scaling exponents of the universal regime.
机译:我们描述了不可逆凝结动力学中的集体振荡行为,其中不断输入单体并去除大簇。对于大范围的碰撞率,该系统会在长时间内达到非平衡稳态,并且团簇尺寸分布趋向于一种通用形式,其特征是在团簇尺寸的空间中质量流量恒定。在本文中,通用性是指随着临界值的增长,稳态变得独立于临界值。但是,如果大集群和小集群之间的聚集率作为集群大小的函数足够陡峭地增加,则将失去通用性。我们确定了过渡到一种状态的过渡,在该过渡中,随着临界值的增长,稳态消失了。随着截止值的增加,这种非普遍的静止状态变得不稳定。它经历了霍普夫分叉,此后,稳态被持续的周期性周期性振荡所取代。这些振动与可激发介质中的弛豫振动有一些相似之处,它们通过团簇尺寸的空间传送质量脉冲,从而使通过任何团簇尺寸的平均质量通量保持恒定。在一定程度上恢复了普遍性,因为振荡的周期和幅度的缩放是从普遍制度的动态缩放指数中继承的。

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