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Aggregate formation in a system of coagulating and fragmenting particles with mass-dependent diffusion rates - art. no. 056104

机译:在具有质量依赖性扩散速率的凝结和碎裂颗粒系统中的聚集体形成 - 艺术。第056104号

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摘要

The effect of introducing a mass-dependent diffusion rate similar tom(-alpha) in a model of coagulation with single-particle breakup is studied both analytically and numerically. The model with alpha=0 is known to undergo a nonequilibrium phase transition as the mass density in the system is varied from a phase with an exponential distribution of mass to a phase with a power-law distribution of masses in addition to a single infinite aggregate. This transition is shown to be curbed, at finite densities, for all alpha>0 in any dimension. However, a signature of this transition is seen in finite systems in the form of a large aggregate and the finite-size scaling implications of this are characterized. The exponents characterizing the steady-state probability that a randomly chosen site has mass m are calculated using scaling arguments. The full probability distribution is obtained within a mean-field approximation and found to compare well with the results from numerical simulations in one dimension. References: 21
机译:在具有单颗粒破裂的凝血模型中引入类似于 tom(-alpha) 的质量依赖性扩散速率的影响进行了分析和数值研究。已知 alpha=0 的模型会经历非平衡相变,因为系统中的质量密度从质量呈指数分布的相变化到具有幂律质量分布的相以及单个无限聚合。在有限密度下,对于任何维度中的所有 alpha>0,这种跃迁都被抑制了。然而,这种转变的特征在有限系统中以大聚合的形式出现,并表征了这种有限大小的缩放影响。使用缩放参数计算表征随机选择的位点具有质量 m 的稳态概率的指数。在平均场近似内获得全概率分布,并发现与一维数值模拟的结果有很好的比较。[参考资料: 21]

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