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The influence of bond rigidity and cluster diffusion on the self-diffusion of hard spheres with square well interaction

机译:键刚度和团簇扩散对具有方阱相互作用的硬球自扩散的影响

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摘要

Hard spheres interacting through a square well potential were simulated by using two different methods: Brownian cluster dynamics (BCD) and event driven Brownian dynamics (EDBD). The structure of the equilibrium states obtained by both methods was compared and found to be almost identical. Self-diffusion coefficients (D) were determined as a function of the interaction strength. The same values were found by using BCD or EDBD. Contrary to EDBD, BCD allows one to study the effect of bond rigidity and hydrodynamic interaction within the clusters. When the bonds are flexible, the effect of attraction on D is relatively weak compared to systems with rigid bonds. D increases first with increasing attraction strength, and then decreases for stronger interaction. Introducing intracluster hydrodynamic interaction weakly increases D for a given interaction strength. Introducing bond rigidity causes a strong decrease in D which no longer shows a maximum as function of the attraction strength. (C) 2008 American Institute of Physics.
机译:通过使用两种不同的方法模拟了通过方阱势相互作用的硬球:布朗簇动力学(BCD)和事件驱动布朗动力学(EDBD)。比较通过两种方法获得的平衡态的结构,发现几乎相同。确定自扩散系数(D)作为相互作用强度的函数。通过使用BCD或EDBD发现了相同的值。与EDBD相反,BCD允许人们研究团簇内的键刚度和流体动力相互作用的影响。当键是柔性的时,与具有刚性键的系统相比,对D的吸引作用相对较弱。 D首先随着吸引强度的增加而增加,然后减小以增强相互作用。在给定的相互作用强度下,引入簇内流体动力相互作用会弱化D。引入粘结刚度会导致D的大幅下降,而D不再显示最大的吸引力强度。 (C)2008美国物理研究所。

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