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玻璃动力学受限模型中的动力学一级相变。

Dynamical first-order phase transition in kinetically constrained models of glasses.

作者信息

Garrahan J P, Jack R L, Lecomte V, Pitard E, van Duijvendijk K, van Wijland F

机构信息

School of Physics and Astronomy, University of Nottingham, Nottingham, UK.

出版信息

Phys Rev Lett. 2007 May 11;98(19):195702. doi: 10.1103/PhysRevLett.98.195702. Epub 2007 May 9.

Abstract

We show that the dynamics of kinetically constrained models of glass formers takes place at a first-order coexistence line between active and inactive dynamical phases. We prove this by computing the large-deviation functions of suitable space-time observables, such as the number of configuration changes in a trajectory. We present analytic results for dynamic facilitated models in a mean-field approximation, and numerical results for the Fredrickson-Andersen model, the East model, and constrained lattice gases, in various dimensions. This dynamical first-order transition is generic in kinetically constrained models, and we expect it to be present in systems with fully jammed states.

摘要

我们表明,玻璃形成体的动力学受限模型的动力学发生在活性和非活性动力学相之间的一阶共存线上。我们通过计算合适的时空可观测量的大偏差函数来证明这一点,例如轨迹中构型变化的数量。我们给出了平均场近似下动态促进模型的解析结果,以及不同维度下弗雷德里克森 - 安德森模型、伊斯特模型和受限晶格气体的数值结果。这种动力学一阶转变在动力学受限模型中是普遍存在的,我们预计它会出现在具有完全堵塞状态的系统中。

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