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Structural precursor to freezing: An integral equation study

机译:冻结的结构先兆:积分方程研究

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Recent simulation studies have drawn attention to the shoulder which forms in the second peak of the radial distribution function of hard spheres at densities close to freezing and which is associated with local crystalline ordering in the dense fluid. We address this structural precursor to freezing using an inhomogeneous integral equation theory capable of describing local packing constraints to a high level of accuracy. The addition of a short-range attractive interaction leads to a well known broadening of the fluid-solid coexistence region as a function of attraction strength. The appearance of a shoulder in our calculated radial distribution functions is found to be consistent with the broadened coexistence region for a simple model potential, thus demonstrating that the shoulder is not exclusively a high density packing effect. (c) 2008 American Institute of Physics.
机译:最近的模拟研究引起了人们的关注,该肩部在接近冻结的密度下在硬球的径向分布函数的第二个峰中形成,并且与致密流体中的局部晶体有序有关。我们使用能够描述局部装箱约束的高精度水平的不均匀积分方程理论来解决这种冻结的结构先兆。短程吸引相互作用的添加导致众所周知的流固结合区域的扩展,其是吸引强度的函数。我们发现,在我们计算的径向分布函数中,肩部的外观与用于简单模型潜力的加宽共存区域一致,因此证明了肩​​部并不仅是高密度堆积效应。 (c)2008年美国物理研究所。

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