Koci Tomas, Bachmann Michael
Soft Matter Systems Research Group, Center for Simulational Physics, The University of Georgia, Athens, Georgia 30602, USA.
Instituto de Física, Universidade Federal de Mato Grosso, Cuiabá (MT), Brazil.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Oct;92(4):042142. doi: 10.1103/PhysRevE.92.042142. Epub 2015 Oct 20.
By means of advanced parallel replica-exchange Monte Carlo methods we examine the influence of elasticity and confinement on the structural transitions of linear systems with restricted bonded interaction. For this purpose, we adopt a model for coarse-grained flexible polymers of finite length in the dilute regime. Hyperphase diagrams are constructed using energy-dependent canonical quantities to demonstrate the effects of the changes in the range of the confined interaction on the liquid and solid structural phases. With increasing bonded interaction range we observe the disappearance of the liquid phase and the fusion of the gas-liquid (or Θ) and the liquid-solid transitions. One of the most remarkable features, the liquid-gas transition, changes from second to first order if the confined interaction range exceeds a threshold that separates polymeric from nonpolymeric systems. The notoriously difficult sampling of the entropically suppressed conformations in the region of very strong first-order transitions is improved by using multiple Gaussian modified ensembles.
通过先进的并行副本交换蒙特卡罗方法,我们研究了弹性和受限条件对具有受限键合相互作用的线性系统结构转变的影响。为此,我们采用了一种用于有限长度粗粒化柔性聚合物在稀溶液状态下的模型。利用与能量相关的正则量构建超相图,以展示受限相互作用范围的变化对液相和固相结构相的影响。随着键合相互作用范围的增加,我们观察到液相消失,气 - 液(或Θ)转变和液 - 固转变融合。最显著的特征之一,即液 - 气转变,如果受限相互作用范围超过将聚合物系统与非聚合物系统分开的阈值,就会从二级转变为一级。通过使用多个高斯修正系综,改善了在非常强的一级转变区域中对熵抑制构象进行采样这一众所周知的难题。