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Free energy barriers for homogeneous crystal nucleation in a eutectic system of binary hard spheres

机译:二元硬球共晶系统中均质晶体成核的自由能垒

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In this study, the free energy barriers for homogeneous crystal nucleation in a system that exhibits a eutectic point are computed using Monte Carlo simulations. The system studied is a binary hard sphere mixture with a diameter ratio of 0.85 between the smaller and larger hard spheres. The simulations of crystal nucleation are performed for the entire range of fluid compositions. The free energy barrier is found to be the highest near the eutectic point and is nearly five times that for the pure fluid, which slows down the nucleation rate by a factor of 10~(-31). These free energy barriers are some of highest ever computed using simulations. For most of the conditions studied, the composition of the critical nucleus corresponds to either one of the two thermodynamically stable solid phases. However, near the eutectic point, the nucleation barrier is lowest for the formation of the metastable random hexagonal closed packed (rhcp) solid phase with composition lying in the two-phase region of the phase diagram. The fluid to solid phase transition is hypothesized to proceed via formation of a metastable rhcp phase followed by a phase separation into respective stable fcc solid phases.
机译:在这项研究中,使用蒙特卡洛模拟计算了显示共晶点的系统中均质晶体成核的自由能垒。研究的系统是二元硬球混合物,较小和较大的硬球之间的直径比为0.85。对流体组成的整个范围进行了晶体成核的模拟。发现自由能垒在共晶点附近最高,是纯流体的近五倍,这使成核速率减慢了10%(-31)。这些自由能垒是使用模拟计算出的最高水平。在大多数研究条件下,关键核的组成对应于两个热力学稳定的固相之一。但是,在共晶点附近,成核势垒对于形成亚稳无规六方密堆积(rhcp)固相的组成最低,其组成位于相图的两相区域。假设流体到固相的转变是通过形成亚稳态的rhcp相,然后相分离成各自的稳定的fcc固相而进行的。

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