受挫晶格气体模型的淬火和退火版本的玻璃化转变

Fierro, de Candia A, Coniglio
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引用次数: 17

摘要

本文研究了三维受挫点阵气体模型的退火版本,其中无序在适当的动力学约束下随时间演化。虽然该模型没有表现出任何热力学转变,但在动力学非线性磁化率的某些特征时间出现了发散峰,这与Donati等人最近发现的平均场p-自旋模型和Lennard-Jones混合物的结果相似。将这些结果与具有淬火相互作用的模型中得到的结果进行比较,我们得出结论,动态磁化率的临界行为与淬火模型中存在的热力学转变相似,并且以静态非线性磁化率的发散为标志,因此表明在过冷玻璃形成液体中也存在类似的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Glass transition in the quenched and annealed version of the frustrated lattice gas model

In this paper we study the three-dimensional frustrated lattice gas model in the annealed version, where the disorder is allowed to evolve in time with a suitable kinetic constraint. Although the model does not exhibit any thermodynamic transition it shows a diverging peak at some characteristic time in the dynamical nonlinear susceptibility, similar to the results on the p-spin model in mean field and the Lennard-Jones mixture recently found by Donati et al. (e-print cond-mat/9905433). Comparing these results to those obtained in the model with quenched interactions, we conclude that the critical behavior of the dynamical susceptibility is reminiscent of the thermodynamic transition present in the quenched model, and signaled by the divergence of the static nonlinear susceptibility, suggesting therefore a similar mechanism also in supercooled glass-forming liquids.

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