Archer Andrew J, Wilding Nigel B
Department of Mathematical Sciences, Loughborough University, Loughborough LE11 3TU, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Sep;76(3 Pt 1):031501. doi: 10.1103/PhysRevE.76.031501. Epub 2007 Sep 4.
Fluids in which the interparticle potential has a hard core, is attractive at moderate separations, and repulsive at large separations are known to exhibit unusual phase behavior, including stable inhomogeneous phases. Here we report a joint simulation and theoretical study of such a fluid, focusing on the relationship between the liquid-vapor transition line and any new phases. The phase diagram is studied as a function of the amplitude of the attraction for a certain fixed amplitude of the long ranged repulsion. We find that the effect of the repulsion is to substitute the liquid-vapor critical point and a portion of the associated liquid-vapor transition line, by two first-order transitions. One of these transitions separates the vapor from a fluid of spherical liquidlike clusters; the other separates the liquid from a fluid of spherical voids. At low temperature, the two transition lines intersect one another and a vapor-liquid transition line at a triple point. While most integral equation theories are unable to describe the new phase transitions, the Percus-Yevick approximation does succeed in capturing the vapor-cluster transition, as well as aspects of the structure of the cluster fluid, in reasonable agreement with the simulation results.
已知粒子间势能具有硬核、在中等距离处具有吸引力且在大距离处具有排斥力的流体表现出异常的相行为,包括稳定的非均匀相。在此,我们报告了对这种流体的联合模拟和理论研究,重点关注液-气转变线与任何新相之间的关系。对于一定固定幅度的长程排斥,研究了相图作为吸引力幅度的函数。我们发现,排斥的作用是用两个一级转变取代液-气临界点和相关液-气转变线的一部分。其中一个转变将蒸汽与球形类液团簇的流体分开;另一个转变将液体与球形空隙的流体分开。在低温下,两条转变线在一个三相点处相互交叉并与气-液转变线相交。虽然大多数积分方程理论无法描述新的相变,但珀库斯-耶维克近似确实成功地捕捉到了蒸汽-团簇转变以及团簇流体结构的一些方面,与模拟结果合理吻合。