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核软化流体的相行为和热力学异常

Phase behavior and thermodynamic anomalies of core-softened fluids.

作者信息

Wilding Nigel B, Magee James E

机构信息

Department of Physics, University of Bath, Bath BA2 7AY, United Kingdom.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2002 Sep;66(3 Pt 1):031509. doi: 10.1103/PhysRevE.66.031509. Epub 2002 Sep 25.

Abstract

We report extensive simulation studies of phase behavior in single component systems of particles interacting via a core-softened interparticle potential. Two recently proposed examples of such potentials are considered; one in which the hard core exhibits a shoulder [Sadr-Lahijany et al., Phys. Rev. Lett. 81, 4895 (1998)], and the other in which the softening takes the form of a linear ramp [Jagla, Phys. Rev. E 63, 061501 (2001)]. Using a combination of state-of-the-art Monte Carlo methods, we obtain the gas, liquid, and solid phase behavior of the shoulder model in two dimensions. We then focus on the thermodynamic anomalies of the liquid phase, namely, maxima in the density and compressibility as a function of temperature. Analysis of the finite-size behavior of these maxima suggests that, rather than stemming from a metastable liquid-liquid critical point, as previously supposed, they are actually induced by the quasicontinuous nature of the two dimensional freezing transition. For the ramp model in three dimensions, we confirm the existence of a stable liquid-liquid ("second") critical point occurring at higher pressure and lower temperature than the liquid-gas critical point. Both these critical points and portions of their associated coexistence curves are located to high precision. In contrast to the shoulder model, the observed thermodynamic anomalies of this model are found to be authentic, i.e., they are not engendered by an incipient new phase. We trace the locus of density and compressibility maxima, the former of which appears to terminate close to the second critical point.

摘要

我们报告了对通过核软化粒子间势相互作用的单组分系统中相行为的广泛模拟研究。考虑了最近提出的此类势的两个例子;一个例子中硬核呈现出一个肩部 [萨德尔 - 拉希贾尼等人,《物理评论快报》81, 4895 (1998)],另一个例子中软化采取线性斜坡的形式 [贾格拉,《物理评论E》63, 061501 (2001)]。使用最先进的蒙特卡罗方法相结合,我们获得了二维肩部模型的气相、液相和固相行为。然后我们关注液相的热力学异常,即密度和压缩性随温度的最大值。对这些最大值的有限尺寸行为的分析表明,与先前假设的情况不同,它们并非源于亚稳的液 - 液临界点,实际上是由二维冻结转变的准连续性质所诱导的。对于三维斜坡模型,我们证实了存在一个稳定的液 - 液(“第二”)临界点,其出现在比液 - 气临界点更高的压力和更低的温度下。这两个临界点及其相关共存曲线的部分都被高精度地定位。与肩部模型不同,该模型观察到的热力学异常被发现是真实的,即它们不是由一个初始的新相所导致的。我们追踪密度和压缩性最大值的轨迹,其中前者似乎在接近第二临界点处终止。

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