Tlusty T, Safran S A
Department of Materials and Interfaces, Weizmann Institute of Science, Rehovot, Israel.
Science. 2000 Nov 17;290(5495):1328-31. doi: 10.1126/science.290.5495.1328.
A defect-induced, critical phase separation in dipolar fluids is predicted, which replaces the usual liquid-gas transition that is driven by the isotropic aggregation of particles and is absent in dipolar fluids due to strong chaining. The coexisting phases are a dilute gas of chain ends that coexists with a high-density liquid of chain branching points. Our model provides a unified explanation for the branched structures, the unusually low critical temperature and density, and the consequent two-phase coexistence "islands" that were recently observed in experiment and simulation.
预测了偶极流体中由缺陷诱导的临界相分离,它取代了通常由粒子各向同性聚集驱动的液-气转变,由于强链化作用,这种转变在偶极流体中不存在。共存相是链端的稀气体与链分支点的高密度液体共存。我们的模型为最近在实验和模拟中观察到的分支结构、异常低的临界温度和密度以及随之而来的两相共存“岛”提供了统一的解释。