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Density Fluctuations of Hard-Sphere Fluids in Narrow Confinement

机译:狭窄限制中硬球流体的密度波动

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Spatial confinement induces microscopic ordering of fluids, which in turn alters many of their dynamic and thermodynamic properties. However, the isothermal compressibility has hitherto been largely overlooked in the literature, despite its obvious connection to the underlying microscopic structure and density fluctuations in confined geometries. Here, we address this issue by probing density profiles and structure factors of hard-sphere fluids in various narrow slits, using x-ray scattering from colloid-filled nanofluidic containers and integral-equation-based statistical mechanics at the level of pair distributions for inhomogeneous fluids. Most importantly, we demonstrate that density fluctuations and isothermal compressibilities in confined fluids can be obtained experimentally from the long-wavelength limit of the structure factor, providing a formally exact and experimentally accessible connection between microscopic structure and macroscopic, thermodynamic properties. Our approach will thus, for example, allow direct experimental verification of theoretically predicted enhanced density fluctuations in liquids near solvophobic interfaces.
机译:空间限制诱导流体的显微序列,这反过来改变了它们的许多动态和热力学性质。然而,尽管它与潜在的微观结构和密度几何形状中的密度波动有明显的连接,但是在文献中的等温可压缩性在很大程度上被忽略了。在这里,我们通过在各种窄狭缝中探测密度分布和硬球流体的密度曲线和结构因素来解决这个问题,使用胶体填充的纳米流体容器和基于一体式的基于型统计力学的X射线散射,以对不均匀的分布的水平液体。最重要的是,我们证明密度波动和在结构因子的长波长极限上实验地实验在实验上获得密度波动和等温性压缩,从而提供了微观结构和宏观,热力学性质之间的正式和实验可访问的连接。因此,我们的方法可以允许直接实验验证理论上预测的液体液体界面附近的液体中的增强密度波动。

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