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Glass-transition asymptotics in two theories of glassy dynamics: Self-consistent generalized Langevin equation and mode-coupling theory

机译:两种理论的玻璃过渡渐近玻璃动态理论:自洽广义Langevin方程和模式耦合理论

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摘要

We contrast the generic features of structural relaxation close to the idealized glass transition that are predicted by the self-consistent generalized Langevin equation theory (SCGLE) against those that are predicted by the mode-coupling theory of the glass transition (MCT). We present an asymptotic solution close to conditions of kinetic arrest that is valid for both theories, despite the different starting points that are adopted in deriving them. This in particular provides the same level of understanding of the asymptotic dynamics in the SCGLE as was previously done only for MCT. We discuss similarities and different predictions of the two theories for kinetic arrest in standard glass-forming models, as exemplified through the hard-sphere system. Qualitative differences are found for models where a decoupling of relaxation modes is predicted, such as the generalized Gaussian core model, or binary hard-sphere mixtures of particles with very disparate sizes. These differences, which arise in the distinct treatment of the memory kernels associated to self- and collective motion of particles, lead to distinct scenarios that are predicted by each theory for partially arrested states and in the vicinity of higher-order glass-transition singularities.
机译:我们对比结构松弛的通用特征接近于自我一致的玻璃转换,这是由自我一致的广义Langevin公式理论(SCHGL)对由玻璃转换的模式耦合理论(MCT)预测的那些预测的理想玻璃化转换。我们呈现渐近解决方案,靠近动力骤动条件,这对于两个理论有效,尽管衍生它们的不同起点是不同的起点。这尤其提供了与以前仅为MCT完成的散射中的渐近动态的相同程度的理解。我们讨论标准玻璃形成模型中的两个理论的相似性和不同预测,如硬球系统所示。对诸如广义高斯核心模型的解耦模式的模型来发现定性差异,例如具有非常不同的尺寸的颗粒的二元硬球混合物。这些差异在与粒子的自我和集体运动相关的内存核的不同处理中产生的差异导致每个理论预测的部分被阻滞状态和高阶玻璃转换奇点附近所预测的不同情景。

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