Hurtado Pablo I, Berthier Ludovic, Kob Walter
Laboratoire des Colloïdes, Verres et Nanomatériaux, UMR 5587, Université Montpellier II and CNRS, Montpellier 34095, France.
Phys Rev Lett. 2007 Mar 30;98(13):135503. doi: 10.1103/PhysRevLett.98.135503. Epub 2007 Mar 28.
We introduce a microscopically realistic model of a physical gel and use computer simulations to study its static and dynamic properties at thermal equilibrium. The phase diagram comprises a sol phase, a coexistence region ending at a critical point, a gelation line determined by geometric percolation, and an equilibrium gel phase unrelated to phase separation. The global structure of the gel is homogeneous, but the stress is only supported by a fractal network. The gel dynamics is highly heterogeneous and we propose a theoretical model to quantitatively describe dynamic heterogeneity in gels. We elucidate several differences between the dynamics of gels and that of glass formers.
我们引入了一种物理凝胶的微观现实模型,并使用计算机模拟来研究其在热平衡下的静态和动态特性。相图包括一个溶胶相、一个在临界点结束的共存区域、一条由几何渗流确定的凝胶化线,以及一个与相分离无关的平衡凝胶相。凝胶的整体结构是均匀的,但应力仅由分形网络支撑。凝胶动力学具有高度的非均匀性,我们提出了一个理论模型来定量描述凝胶中的动态非均匀性。我们阐明了凝胶动力学与玻璃形成体动力学之间的几个差异。