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Thermodynamic and structural properties of repulsive hard-core Yukawa fluid:Integral equation theory,perturbation theory and Monte Carlo simulations

机译:斥力硬核汤河流体的热力学和结构性质:积分方程理论,扰动理论和蒙特卡洛模拟

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摘要

The thermodynamic and structural properties of purely repulsive hard-core Yukawa particles in the fluid state are determined through Monte Carlo simulation and modeled using perturbation theory and integral equation theory in the mean spherical approximation (MSA).Systems of particles with Yukawa screening lengths of 1.8,3.0,and 5.0 are examined with results compared to variations of MSA and perturbation theory.Thermodynamic properties were predicted well by both theories in the fluid region up to the fluid-solid phase boundary.Further,we found that a simplified exponential version of the MSA is the most accurate at predicting radial distribution function at contact.Radial distribution function of repulsive hard-core Yukawa particles are also reported.The results show that methods based on MSA and perturbation theory that are typically applied to the attractive hard-core Yukawa potential can also be extended to the purely repulsive hard-core Yukawa potential.
机译:通过蒙特卡洛模拟确定纯斥斥性硬质汤川颗粒的热力学和结构性质,并在平均球面近似(MSA)中使用微扰理论和积分方程理论对它们进行建模。汤川筛选长度为1.8的颗粒系统,3.0和5.0进行了比较,结果与MSA的变化形式和微扰理论进行了比较。两种理论都很好地预测了流体在流体-固相边界之前的热力学性质。此外,我们发现了简化的指数形式MSA是最准确的预测接触时径向分布函数的方法,还报道了斥力的硬核Yukawa粒子的径向分布函数,结果表明基于MSA和扰动理论的方法通常用于有吸引力的硬核Yukawa势也可以扩展到纯粹排斥性的汤川势。

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