Auer S, Frenkel D
FOM Institute for Atomic and Molecular Physics, Kruislaan 407, 1098 SJ Amsterdam, The Netherlands.
J Chem Phys. 2004 Feb 8;120(6):3015-29. doi: 10.1063/1.1638740.
Special computational techniques are required to compute absolute crystal nucleation rates of colloidal suspensions. Using crystal nucleation of hard-sphere colloids as an example, we describe in some detail the novel computational tools that are needed to perform such calculations. In particular, we focus on the definition of appropriate order parameters that distinguish liquid from crystal, and on techniques to compute the kinetic prefactor that enters in the expression for the nucleation rate. In addition, we discuss the relation between simulation results and theoretical predictions based on classical nucleation theory.
计算胶体悬浮液的绝对晶体成核速率需要特殊的计算技术。以硬球胶体的晶体成核为例,我们详细描述了进行此类计算所需的新型计算工具。特别是,我们重点关注区分液体和晶体的适当序参量的定义,以及计算成核速率表达式中出现的动力学前置因子的技术。此外,我们还讨论了模拟结果与基于经典成核理论的理论预测之间的关系。