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Anisotropic Pair Correlations and Structure Factors of Confined Hard-Sphere Fluids: An Experimental and Theoretical Study

机译:受限硬球流体的各向异性对相关性和结构因子:实验和理论研究

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摘要

We address the fundamental question: how are pair correlations and structure factors of hard-sphere fluids affected by confinement between hard planar walls at close distance? For this purpose, we combine x-ray scattering from colloid-filled nanofluidic channel arrays and first-principles inhomogeneous liquid-state theory within the anisotropic Percus-Yevick approximation. The experimental and theoretical data are in remarkable agreement at the pair-correlation level, providing the first quantitative experimental verification of the theoretically predicted confinement-induced anisotropy of the pair-correlation functions for the fluid. The description of confined fluids at this level provides, in the general case, important insights into the mechanisms of particle-particle interactions in dense fluids under confinement.
机译:我们解决了一个基本问题:硬球在近距离内的约束如何影响硬球流体的对相关性和结构因子?为此,我们在各向异性Percus-Yevick逼近中结合了胶体填充纳米流体通道阵列的x射线散射和第一性原理非均质液态理论。实验和理论数据在成对相关水平上取得了显着的一致,为流体的成对相关函数的理论预测的约束诱发各向异性提供了首次定量实验验证。在一般情况下,在此级别上对密闭流体的描述提供了对密闭条件下稠密流体中颗粒间相互作用机制的重要见解。

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