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首页> 外文期刊>International Journal of Thermophysics >Dual Critical Points and Related Phenomena in Simple Fluids from the Perspective of (Approximate) Renormalization Theory
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Dual Critical Points and Related Phenomena in Simple Fluids from the Perspective of (Approximate) Renormalization Theory

机译:从(近似)重归一化理论看简单流体中的对偶临界点和相关现象

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摘要

It is known that some single component fluids can have coexisting low-density and high-density liquid phases with two, separate, gas–liquid and liquid–liquid, critical points. Such behavior is found both by experiments and in recent molecular-dynamics simulations performed for certain simple isotropic attractive pair potentials with softened repulsive cores. In the present investigation, a “global” renormalization group theory that was employed previously to make predictions for simple Lennard–Jones and square-well fluids over wide ranges of density and temperature, including the critical point, in reasonably good agreement with molecular dynamics and Monte Carlo simulations, is applied to simple shoulder potentials and to square-well potentials with softened repulsive cores. Results using this renormalization approach are compared with some previously reported results for a shoulder potential and expectations regarding dual critical points for water.
机译:众所周知,某些单组分流体可以同时存在低密度和高密度液相,并具有两个单独的气液和液液临界点。这种行为既可以通过实验又可以在最近的分子动力学模拟中发现,这些模拟是对带有软化排斥核的某些简单的各向同性吸引对势进行的。在本研究中,以前使用“全局”重整化群理论对密度和温度范围广泛(包括临界点)的简单Lennard-Jones和方阱流体进行了预测,并且与分子动力学和蒙特卡洛模拟应用于简单的肩部电势和软化斥力铁心的方阱电势。将使用这种重归一化方法的结果与先前报告的某些结果进行了比较,得出了肩部潜力和对水的双重临界点的期望。

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