不对称
不稳定性
曲率
湍流
机械
对称(几何)
折叠(DSP实现)
物理
化学物理
材料科学
几何学
数学
量子力学
电气工程
工程类
作者
Liang Zhao,Paarth Gulati,Fernando Caballero,Itamar Kolvin,Raymond Adkins,M. Cristina Marchetti,Zvonimir Dogic
标识
DOI:10.1073/pnas.2410345121
摘要
We study the structure and dynamics of the interface separating a passive fluid from a microtubule-based active fluid. Turbulent-like active flows power giant interfacial fluctuations, which exhibit pronounced asymmetry between regions of positive and negative curvature. Experiments, numerical simulations, and theoretical arguments reveal how the interface breaks up the spatial symmetry of the fundamental bend instability to generate local vortical flows that lead to asymmetric interface fluctuations. The magnitude of interface deformations increases with activity: In the high activity limit, the interface self-folds invaginating passive droplets and generating a foam-like phase, where active fluid is perforated with passive droplets. These results demonstrate how active stresses control the structure, dynamics, and break-up of soft, deformable, and reconfigurable liquid–liquid interfaces.
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