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Phase separation in antisymmetric films: A molecular dynamics study

机译:反对称膜中的相分离:分子动力学研究

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We have used molecular dynamics (MD) simulations to study phase-separation kinetics in a binary fluid mixture (AB) confined in an antisymmetric thin film. One surface of the film (located at z = 0) attracts the A-atoms, and the other surface (located at z = D) attracts the B-atoms. We study the kinetic processes which lead to the formation of equilibrium morphologies subsequent to a deep quench below the miscibility gap. In the initial stages, one observes the formation of a layered structure, consisting of an A-rich layer followed by a B-rich layer at z = 0; and an analogous structure at z = D. This multi-layered morphology is time-dependent and propagates into the bulk, though it may break up into a laterally inhomogeneous structure at a later stage. We characterize the evolution morphologies via laterally averaged order parameter profiles; the growth laws for wetting-layer kinetics and layer-wise length scales; and the scaling properties of layer-wise correlation functions.
机译:我们已经使用分子动力学(MD)模拟来研究局限于反对称薄膜中的二元流体混合物(AB)中的相分离动力学。膜的一个表面(位于z = 0)吸引A原子,而另一个表面(位于z = D)吸引B原子。我们研究了在混溶间隙以下深度淬灭后导致形成平衡形态的动力学过程。在初始阶段,观察到层状结构的形成,该层状结构由z = 0时的A富层和B富层组成。这种多层形态随时间而变,并传播到主体中,尽管在稍后阶段可能会分解成横向不均匀的结构。我们通过横向平均顺序参数轮廓来描述演化形态。润湿层动力学和分层长度尺度的生长规律;以及分层相关函数的缩放属性。

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