相图
解耦(概率)
各向异性
干扰
棒
统计物理学
布朗运动
生物系统
活性物质
布朗动力学
物理
集体运动
位阻效应
纳米技术
经典力学
自由度(物理和化学)
材料科学
相变
化学物理
计算机科学
集体行为
机械
纵横比(航空)
相(物质)
运动(物理)
物理系统
现象学(哲学)
复杂系统
作者
Yogesh G. Shelke,Anpuj Nair S,Hanumantha Rao Vutukuri
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-04-09
卷期号:392 (6794): 202-206
标识
DOI:10.1126/science.ady7618
摘要
Shape anisotropy of individual building blocks plays a crucial role in creating exotic structures and controlling phase behavior in equilibrium systems. We present a combined experimental and simulation study in which we used light-driven self-propelled rods to investigate when and how shape-induced alignment and steric and hydrodynamic interactions govern self-organization. Varying rod aspect ratio and area fraction causes the system to evolve from active Brownian motion to swarming, active turbulence, flocking, large clusters, and jamming. A state diagram summarizes emergent behaviors, and spatiotemporal analyses reveal distinct giant-number fluctuations across states. This minimal model offers insight into the self-organization of biological rodlike microswimmers, enabling the decoupling of physical from biological mechanisms. Our results provide design rules for programmable synthetic active materials and highlight parallels with bacterial swarms and other biological assemblies.
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