非平衡态热力学
统计物理学
哈密顿量(控制论)
热的
凝聚态物理
物理
突出
玻璃化转变
材料科学
退火(玻璃)
格子(音乐)
等价(形式语言)
谱线
热涨落
声子
转变温度
分叉
现象学(哲学)
多样性(控制论)
量子隧道
哈密顿系统
模型系统
动力系统理论
磁滞
比热
作者
Makoto Suda,Edan Lerner,Eran Bouchbinder
摘要
Glassy systems reveal a wide variety of generic behaviors, which lack a unified theoretical description. Here, we study a mean-field model recently shown to reproduce the universal nonphononic vibrational spectra of glasses under oscillatory driving forces. The driven mean-field model, featuring a disordered Hamiltonian structure, naturally predicts the salient dynamical phenomena in cyclically deformed glasses. Specifically, it features an oscillatory yielding transition characterized by an absorbing-to-diffusive transition in the system's microscopic trajectories and large-scale hysteresis. The model also reveals dynamic slowing down from both sides of the transition, as well as mechanical and thermal annealing effects that mirror their glass counterparts. Finally, we demonstrate a nonequilibrium ensemble equivalence between the driven postyielding dynamics at fixed quenched disorder and quenched disorder averages of the nondriven system along with memory formation.
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