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首页> 外文期刊>The Journal of Chemical Physics >Analysis of the validity of perturbation density functional theory:Based on extensive simulation for simple fluid at supercritical and subcritical temperature under various external potentials
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Analysis of the validity of perturbation density functional theory:Based on extensive simulation for simple fluid at supercritical and subcritical temperature under various external potentials

机译:摄动密度泛函理论有效性的分析:基于广泛模拟的各种外部电势下超临界和亚临界温度下的简单流体

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摘要

Because of the scarcity of available simulation data for confined hard-core attractive Yukawa model fluid,extensive Monte Carlo(MC)simulation research for this fluid under the influence of various external potentials were carried out.The present MC simulation results were employed to test a performance of the third-order perturbation density functional theory(DFT)based on a high order direct correlation function(DCF)[S.Zhou and E.Ruckenstein,Phys.Rev.E.61,2704(2000)].It was found that the present perturbation DFT formalism is soundly structured only if the imported second-order DCF is reliable.In this case,the accuracy of the results can be satisfactory or even very high for various types of external potentials.Further,the associated adjustable parameter can be universal,i.e.,independent of the particular external field responsible for the generation of a nonuniform density profile.Dependence of both the maintenance of the reliability of the formalism and holding of the universality of the adjustable parameter on the accuracy of the imported bulk second-order DCF can be strengthened by the large difference between the external field investigated and that caused by a single hard wall used for specification of the adjustable parameter.In case the gaseous density in the subcritical region is below the coexistence density,an excellent performance of the present formalism is observed even for the mean spherical approximation's second-order DCF as an input.This advantageous property,combined with the fact that the present formalism needs only the second-order DCF of fluid at the coexistence state as an input,enables the present formalism to be a very good theoretical tool for the investigations of wetting and prewetting transitions.
机译:由于有限的硬核有吸引力的Yukawa模型流体的可用模拟数据稀缺,因此在各种外部电势的影响下对该流体进行了广泛的蒙特卡洛(MC)模拟研究。基于高阶直接相关函数(DCF)的三阶摄动密度泛函理论(DFT)的性能[S.Zhou and E.Ruckenstein,Phys.Rev.E.61,2704(2000)]。只有在输入的二阶DCF可靠的情况下,才能证明当前的扰动DFT形式结构是合理的。在这种情况下,对于各种类型的外部电势,结果的精度都可以令人满意甚至很高。此外,相关的可调参数可以是通用的,即独立于负责产生不均匀密度分布的特定外部场。既要维持形式主义的可靠性,又要保持形式的普遍性可以通过研究的外部场与由单个硬壁来确定可调参数的规范之间的巨大差异来增强进口散装二阶DCF精度的可调参数。如果该区域低于共存密度,则即使以平均球面近似的二阶DCF作为输入,也可以观察到本形式主义的出色性能。这种有利的特性与当前形式主义仅需要二阶DCF的事实结合在一起。共存状态下的流体作为输入,使当前的形式主义成为研究润湿和预润湿过渡的很好的理论工具。

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