Instituto de Física "Gleb Wataghin", Universidade Estadual de Campinas, UNICAMP, 13083-859 Campinas, São Paulo, Brazil.
Phys Rev E. 2017 Sep;96(3-1):032115. doi: 10.1103/PhysRevE.96.032115. Epub 2017 Sep 11.
Using molecular dynamics simulations and nonequilibrium thermodynamic-integration techniques we compute the Helmholtz free energies of the body-centered-cubic (bcc), face-centered-cubic (fcc), hexagonal close-packed, and fluid phases of the Uhlenbeck-Ford model (UFM) and use the results to construct its phase diagram. The pair interaction associated with the UFM is characterized by an ultrasoft, purely repulsive pair potential that diverges logarithmically at the origin. We find that the bcc and fcc are the only thermodynamically stable crystalline phases in the phase diagram. Furthermore, we report the existence of two reentrant transition sequences as a function of the number density, one featuring a fluid-bcc-fluid succession and another displaying a bcc-fcc-bcc sequence near the triple point. We find strong resemblances to the phase behavior of other soft, purely repulsive systems such as the Gaussian-core model (GCM), inverse-power-law, and Yukawa potentials. In particular, we find that the fcc-bcc-fluid triple point and the phase boundaries in its vicinity are in good agreement with the prediction supplied by a recently proposed corresponding-states principle [J. Chem. Phys. 134, 241101 (2011)JCPSA60021-960610.1063/1.3605659; Europhys. Lett. 100, 66004 (2012)EULEEJ0295-507510.1209/0295-5075/100/66004]. The particularly strong resemblance between the behavior of the UFM and GCM models are also discussed.
利用分子动力学模拟和非平衡热力学积分技术,我们计算了 Uhlenbeck-Ford 模型(UFM)的体心立方(bcc)、面心立方(fcc)、六方密排和流体相的亥姆霍兹自由能,并利用这些结果构建了它的相图。与 UFM 相关的对相互作用由一个超软的、纯排斥的对势能来描述,该势能在原点处对数发散。我们发现 bcc 和 fcc 是相图中唯二的热力学稳定的晶体相。此外,我们报告了两个重入转变序列的存在,它们是作为数密度的函数,一个具有流体-bcc-流体的连续体,另一个在三相点附近显示出 bcc-fcc-bcc 的连续体。我们发现与其他软的、纯排斥系统(如高斯核模型(GCM)、逆幂律和 Yukawa 势)的相行为有很强的相似性。特别是,我们发现 fcc-bcc-流体三相点及其附近的相边界与最近提出的相应状态原理的预测(J. Chem. Phys. 134, 241101 (2011)JCPSA60021-960610.1063/1.3605659; Europhys. Lett. 100, 66004 (2012)EULEEJ0295-507510.1209/0295-5075/100/66004)有很好的一致性。还讨论了 UFM 和 GCM 模型之间行为的特别强的相似性。