论文标题

颗粒桩压实中退火和老化的通用特征

Universal Features of Annealing and Aging in Compaction of Granular Piles

论文作者

Gago, Paula A., Boettcher, Stefan

论文摘要

我们探索了从液体到玻璃状状态的硬淬灭后的颗粒桩的压实动力学。首先,我们确定在窃听过程中原本的颗粒桩表现出与玻璃状聚合物或胶体系统相当的退火行为。像其他系统一样,该堆经历玻璃过渡,并在低搅拌下以低搅拌的速度“冻结”到不同的非平衡玻璃状态,从高激动的相同初始平衡状态开始。然后,我们将系统从高度敏感的状态瞬间击退到玻璃过渡状态以下,以研究随后的衰老动力学。在这种经典的老化方案中,密度在几十年内会在对数上增加(即桩的势能减少)。我们在这里确定了间歇性的,不可逆的事件(“ Quakes”),而不是在整个系统范围内进行热力学措施。我们发现,事件速率夸张地减速,这解释了当评估对向下位移的综合贡献时观察到的密度增加。我们认为,这种夸张的减速事件速率与对数波森过程一致,这也是许多热玻璃中衰老的普遍特征。

We explore the compaction dynamics of a granular pile after a hard quench from a liquid into the glassy regime. First, we establish that the otherwise athermal granular pile during tapping exhibits annealing behavior comparable to glassy polymer or colloidal systems. Like those other systems, the pile undergoes a glass transition and "freezes" into different non-equilibrium glassy states at low agitation for different annealing speeds, starting from the same initial equilibrium state at high agitation. Then, we quench the system instantaneously from the highly-agitated state to below the glass transition regime to study the ensuing aging dynamics. In this classical aging protocol, the density increases (i.e., the potential energy of the pile decreases) logarithmically over several decades in time. Instead of system-wide, thermodynamic measures, here we identify the intermittent, irreversible events ("quakes") that actually drive the glassy relaxation process. We find that the event rate decelerates hyperbolically, which explains the observed increase in density when the integrated contribution to the downward displacements is evaluated. We argue that such a hyperbolically decelerating event rate is consistent with a log-Poisson process, also found as a universal feature of aging in many thermal glasses.

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