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Plane-wave approach to the exact van der Waals interaction between colloid particles

机译:胶体颗粒之间的精确范德瓦尔斯的平面波方法

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The numerically exact evaluation of the van der Waals interaction, also known as Casimir interaction when including retardation effects, constitutes a challenging task. We present a new approach based on the plane-wave basis and demonstrate that it possesses advantages over the more commonly used multipole basis. The rotational symmetry of the plane-sphere and sphere-sphere geometries can be exploited by means of a discrete Fourier transform. The new technique is applied to a study of the interaction between a colloid particle made of polystyrene or mercury and another polystyrene sphere or a polystyrene wall in an aqueous solution. Special attention is paid to the influence of screening caused by a variable salt concentration in the medium. It is found that, in particular for low salt concentrations, the error implied by the proximity force approximation is larger than usually assumed. For a mercury droplet, a repulsive interaction is found for sufficiently large distances, provided that screening is negligible. We emphasize that the effective Hamaker parameter depends significantly on the scattering geometry on which it is based. Published under license by AIP Publishing.
机译:在包括延迟效应包括延迟效应时,van der Wa种交互的数值精确评估,也称为Casimir相互作用,构成了一个具有挑战性的任务。我们介绍了一种基于平面波的新方法,并证明它具有比更常用的多极的基础上具有优势。可以通过离散的傅里叶变换来利用平面球和球形地几何形状的旋转对称性。新技术用于研究由聚苯乙烯或汞和另一种聚苯乙烯球的胶体颗粒与水溶液中的聚苯乙烯壁之间的相互作用的研究。特别注意培养基中可变盐浓度引起的筛选的影响。发现,特别是对于低盐浓度,由接近力近似暗示的误差大于通常假设的误差。对于汞液滴,发现了足够大的距离的排斥相互作用,只要筛选可以忽略不计。我们强调有效的哈布拉制造商参数在显着取决于其基于散射几何体。通过AIP发布在许可证下发布。

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