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首页> 外文期刊>Molecular physics >Monte Carlo simulation and renormalized perturbation theory study of the dielectric properties of mixtures of polarizable hard spheres and polarizable dipolar hard spheres
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Monte Carlo simulation and renormalized perturbation theory study of the dielectric properties of mixtures of polarizable hard spheres and polarizable dipolar hard spheres

机译:可极化硬球和可极化偶极硬球混合物的介电特性的蒙特卡罗模拟和归一化摄动理论研究

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The dielectric properties of mixtures of polarizable hard spheres and polarizable dipolar hard spheres is studied using Monte Carlo simulations and a renormalized perturbation theory. The equation for the dielectric constant of pure polarizable dipolar fluids is extended to mixtures by replacing the mixture with a pure fluid using a mixing rule. We report results for the dielectric constant as a function of the mole fraction, the dipole moment of the polar component, and the molecular polarizabilities. As the polarizability of the dipolar component is increased, an abrupt increase in the dielectric constant appears that is not reproduced by the perturbation approach. This behaviour is caused by increasing correlations between dipoles that are studied by means of angular correlation functions and the various terms of the fluctuation of the total dipole moment as obtained from simulations.
机译:使用蒙特卡罗模拟和归一化摄动理论研究了可极化硬球和可极化偶极硬球混合物的介电性能。通过使用混合规则将混合物替换为纯流体,可以将纯可极化偶极流体的介电常数方程扩展到混合物。我们报告介电常数与摩尔分数,极性组分的偶极矩和分子极化率的函数关系。随着偶极子组件极化率的提高,介电常数出现突然增加,而这种扰动方法并没有产生这种增加。这种现象是由于偶极子之间的相关性增加所引起的,而偶极子之间的相关性是通过角度相关函数进行研究的,而偶极子总动量的各种波动项则是通过仿真获得的。

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