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Simulation and theory of fluid-fluid interfaces in binary mixtures of hard spheres and hard rods

机译:硬球和硬棒的二元混合物中流体-流体界面的模拟和理论

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We consider the free interface between demixed fluid phases in a mixture of hard spheres and vanishingly thin hard rods using Monte Carlo simulations and density functional theory. Both approaches treat the full binary mixture and hence include all rod-induced many-body depletion interactions between spheres. The agreement between theoretical and simulation results for density and orientation order profiles across the interface is remarkable, even for states not far from the critical point. The simulation results confirm the previously predicted preferred vertical (parallel) alignment of rod orientation to the interface plane at the sphere-rich (sphere-poor) side. This ordering should be experimentally observable in phase-separated colloidal rod-sphere mixtures. [References: 25]
机译:我们考虑使用蒙特卡洛模拟和密度泛函理论,将混合了硬球体和逐渐消失的细硬杆的混合流体相之间的自由界面。两种方法都处理完整的二元混合物,因此包括所有杆诱导的球之间的多体耗尽相互作用。即使在距离临界点不远的状态下,界面上的密度和取向顺序分布的理论和仿真结果之间的一致性也很显着。仿真结果证实了先前预测的棒取向相对于富球(贫球)侧界面平面的首选垂直(平行)对齐。在相分离的胶体棒-球混合物中,该顺序应在实验上可观察到。 [参考:25]

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