Academic Journal

Interpolating the radial distribution function in a two-dimensional fluid across a wide temperature range.

التفاصيل البيبلوغرافية
العنوان: Interpolating the radial distribution function in a two-dimensional fluid across a wide temperature range.
المؤلفون: Kryuchkov, Nikita P.1 (AUTHOR) kruchkov_nkt@mail.ru, Nasyrov, Artur D.1 (AUTHOR), Denisenko, Ilya R.1 (AUTHOR), Yurchenko, Stanislav O.1 (AUTHOR) st.yurchenko@mail.ru
المصدر: Journal of Chemical Physics. 9/7/2024, Vol. 161 Issue 9, p1-12. 12p.
مصطلحات موضوعية: *RADIAL distribution function, *IDEAL gases, *STATISTICAL correlation, *INTEGRAL equations, *COLLOIDS
مستخلص: Calculations of pair correlations in fluids usually require resource-intensive simulations or integral equations, while existing simple approximations lack accuracy. Here, we show that the pair correlation function for monolayer fluid-like systems can be decomposed into correlation peaks defined using Voronoi cells. Being properly normalized, these peaks exhibit a universal form, weak temperature dependence, and resemble those of an ideal gas, except for the first peak. As a result, we propose a simple and accurate approach to interpolate the pair correlation functions, suitable for molecular, colloids, and cellular fluids. [ABSTRACT FROM AUTHOR]
قاعدة البيانات: Academic Search Index
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Array ( [Name] => TitleSource [Label] => Source [Group] => Src [Data] => <searchLink fieldCode="JN" term="%22Journal+of+Chemical+Physics%22">Journal of Chemical Physics</searchLink>. 9/7/2024, Vol. 161 Issue 9, p1-12. 12p. )
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Array ( [Name] => Abstract [Label] => Abstract [Group] => Ab [Data] => Calculations of pair correlations in fluids usually require resource-intensive simulations or integral equations, while existing simple approximations lack accuracy. Here, we show that the pair correlation function for monolayer fluid-like systems can be decomposed into correlation peaks defined using Voronoi cells. Being properly normalized, these peaks exhibit a universal form, weak temperature dependence, and resemble those of an ideal gas, except for the first peak. As a result, we propose a simple and accurate approach to interpolate the pair correlation functions, suitable for molecular, colloids, and cellular fluids. [ABSTRACT FROM AUTHOR] )
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