脆弱性
相图
背景(考古学)
缩放比例
渡线
统计物理学
无定形固体
放松(心理学)
相(物质)
凝聚态物理
玻璃化转变
材料科学
振幅
粒子(生态学)
原子堆积因子
物理
分子动力学
相变
化学物理
粒子动力学
动力学(音乐)
软物质
模型系统
粒子系统
可重入
图表
作者
Puneet Pareek,Peter Sollich,Saroj Kumar Nandi,Ludovic Berthier
标识
DOI:10.1073/pnas.2516624123
摘要
Understanding the influence of activity on dense amorphous assemblies is crucial for biological processes such as wound healing, embryogenesis, or cancer progression. Here, we study the effect of self-propulsion forces of amplitude f 0 and persistence time τ p in dense assemblies of soft repulsive particles by simulating a model particle system that interpolates between particulate active matter and biological tissues. We identify the fluid and glass phases of the three-dimensional phase diagram obtained by varying f 0 , τ p , and the packing fraction ϕ . The morphology of the phase diagram accounts for a nonmonotonic evolution of the relaxation time with τ p , which is a direct consequence of the crossover in the dominant relaxation mechanism, from glassy to jamming. A second major consequence is the evolution of the glassy dynamics from sub-Arrhenius to super-Arrhenius. We show that this tunable glass fragility extends to active systems analogous observations reported for passive particles. This analogy allows us to apply a dynamic scaling analysis proposed for the passive case, in order to account for our results for active systems. Finally, we discuss similarities and differences between our results and recent findings in the context of computational models of biological tissues.
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