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Microscopic models of mode-coupling theory: The F _(12) scenario

机译:模式耦合理论的微观模型:F _(12)场景

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摘要

We provide extended evidence that mode-coupling theory (MCT) of supercooled liquids for the F _(12) schematic model admits a microscopic realization based on facilitated spin models with tunable facilitation. Depending on the facilitation strength, one observes two distinct dynamical glass transition lines-continuous and discontinuous-merging at a dynamical tricritical-like point with critical decay exponents consistently related by MCT predictions. The mechanisms of dynamical arrest can be naturally interpreted in geometrical terms: the discontinuous and continuous transitions correspond to bootstrap and standard percolation processes, in which the incipient spanning cluster of frozen spins forms either a compact or a fractal structure, respectively. Our cooperative dynamical facilitation picture of glassy behavior is complementary to the one based on disordered systems and can account for higher-order singularity scenarios in the absence of a finite temperature thermodynamic glass transition. We briefly comment on the relevance of our results to finite spatial dimensions and to the F _(13) schematic model.
机译:我们提供了扩展的证据,表明F _(12)原理图模型的过冷液体的模式耦合理论(MCT)允许基于带有可调节便利化的自旋模型的微观实现。根据促进强度,人们观察到两条截然不同的动态玻璃化转变线,即在动态三临界点上的连续和不连续合并,临界衰减指数与MCT预测一致相关。动力学停滞的机理可以用几何术语自然地解释:不连续和连续的过渡对应于自举和标准渗流过程,其中冷冻自旋的初始跨越簇分别形成紧密结构或分形结构。我们对玻璃态行为的合作动力学促进图是对基于无序系统的动力学图的补充,并且可以在没有有限温度热力学玻璃化转变的情况下解决高阶奇异情况。我们简要评论了我们的结果与有限空间尺寸和F _(13)示意图模型的相关性。

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