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A semianalytical 'reverse' approach to link structure and microscopic interactions in two-Yukawa competing fluids

机译:一种半±alytical“反向”方法,以跨越两性竞争流体中的结构和微观相互作用

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摘要

We study theoretically a prototype hard-sphere two-Yukawa model with competing interactions, under thermodynamic conditions associated with the formation of clusters. We adopt the analytically solvable random phase approximation and show that this theory predicts reasonably well the structure of the fluid-in comparison with exact Monte Carlo results-within a unique parameterization of the direct correlation function inside the hard core of particles. In particular, the theory follows correctly the development, in the structure factor, of a local peak at low wavevectors, as peculiarly associated with the onset of aggregation. We then model the direct correlation function in the same wavevector regime by a Gaussian function, so as to systematically investigate, in a "reverse" scheme, how varying the properties of the local peak modifies the original underlying competing interaction. We show that large variations in the height of the peak are generally associated with comparatively smaller variations in the height of the microscopic repulsive barrier; moreover, the shrinking and shifting towards lower wavevectors of the peak may be interpreted in terms of the displacement of the barrier, producing a substantial enlargement of the range of both the attractive and repulsive contributions to the interaction potential. Finally, we document the way the repulsive barrier tends to vanish as the two-Yukawa fluid approaches a "simple fluid" behavior, heralding the onset of a liquid-vapor phase separation. Published by AIP Publishing.
机译:我们在与群集形成相关的热力学条件下理论上,从理论上研究了一个具有竞争相互作用的原型硬球模型。我们采用分析可溶性的随机相位近似,并表明该理论相当良好地预测流体的结构 - 与精确的蒙特卡罗结果相比 - 在颗粒硬核内的直接相关函数的独特参数化内。特别地,该理论在低波浪管处的局部峰的结构中正确地进行了正确的发展,如与聚集的开始相关的。然后,我们通过高斯函数模拟在相同的波动制度中的直接相关函数,以便在“反向”方案中,以“反向”方案进行系统地进行调查,如何改变本地峰值的特性修改原始潜在的竞争相互作用。我们表明,峰值高度的大变化通常与微观排斥屏障高度的相对较小的变化相关联;此外,峰值的缩小和移位的峰值的缩小和变化可以在屏障的位移方面解释,产生对相互作用电位的吸引力和排斥贡献的范围的显着放大。最后,随着两浴川流体接近“简单的流体”行为,揭示液相分离的发作,我们记录了排斥障碍倾向于消失的方式。通过AIP发布发布。

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