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首页> 外文期刊>The Journal of Chemical Physics >Relationships between the single particle harrier hopping theory and thermodynamic,disordered media,elastic,and jamming models of glassy systems
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Relationships between the single particle harrier hopping theory and thermodynamic,disordered media,elastic,and jamming models of glassy systems

机译:单粒子跳跃理论与玻璃体系热力学,无序介质,弹性和干扰模型的关系

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摘要

The predictions of the ultralocal limit of the activated hopping theory of highly viscous simple fluids and colloidal suspensions [K.S.Schweizer and G.Yatsenko,J.Chem.Phys.127,164505 (2007),preceding paper] for the relaxation time and effective activation barrier are compared with those of diverse alternative theoretical approaches and computer simulation.A nonlinear connection between the barrier height and excess pressure as empirically suggested by simulations of polydisperse repulsive force fluids is identified.In the dense normal and weakly dynamical precursor regime,where entropic barriers of hard spheres are nonexistent or of order the thermal energy,agreement with an excess entropy ansatz is found.In the random close packing or jamming limit,the barrier hopping theory predicts an essential singularity stronger than the free volume model,which is in agreement with the simplest entropic droplet nucleation and replica field theoretic approaches.Upon further technical simplification of the theory,close connections with renormalization group and nonperturbative memory function based studies of activated transport of a Brownian particle in a disordered medium can been identified.Several analytic arguments suggest a qualitative consistency between the barrier hopping theory and solid-state elastic models based on the high frequency shear modulus and a molecular-sized apparent activation volume.Implications of the analysis for the often high degeneracy of conflicting explanations of glassy dynamics are discussed.
机译:高黏度简单流体和胶体悬浮液的活化跳变理论的超局限性预测[KSSchweizer和G.Yatsenko,J.Chem.Phys.127,164505(2007),前文]对于松弛时间和有效活化将屏障与多种替代性理论方法和计算机模拟进行比较。确定了屏障高度与过压之间的非线性联系,如多分散斥力流体的模拟所表明的那样。在稠密的常态和弱动力前驱体条件下,存在熵屏障的硬球不存在或有序的热能,与过量的熵ansatz一致。在随机紧密堆积或拥挤极限中,势垒跳跃理论预测本质奇点比自由体积模型强,这与最简单的熵液滴成核和复制场理论方法。进一步的技术简化从理论上讲,可以确定与重归一化组的紧密联系以及基于无扰动记忆函数的无序介质中布朗粒子的活化输运的研究。多个分析论点表明,势垒跳跃理论与基于固体弹性模型的定性一致性关于高频剪切模量和分子大小的表观活化体积的分析。讨论了玻璃态动力学的相互矛盾的解释通常是高度简并的分析的含义。

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