Baconnier Paul, Shohat Dor, Dauchot Olivier
UMR CNRS Gulliver 7083, ESPCI Paris, PSL Research University, 75005 Paris, France.
School of Physics and Astronomy, Tel-Aviv University, Tel Aviv 69978, Israel.
Phys Rev Lett. 2023 Jan 13;130(2):028201. doi: 10.1103/PhysRevLett.130.028201.
The recent finding of collective actuation in active solids-solids embedded with active units-is a new promise for the design of multifunctional materials with genuine autonomy, and a better understanding of dense biological systems. Here, we combine the experimental study of centimetric model active solids, the numerical study of an agent-based model, and theoretical arguments to reveal a new form of collective actuation and how mechanical tension can serve as a general mechanism for transitioning between different collective actuation regimes. The presence of hysteresis when varying tension back and forth highlights the nontrivial selectivity of collective actuations.
近期在嵌入活性单元的活性固体(即固体 - 固体)中发现的集体驱动现象,为设计具有真正自主性的多功能材料以及更好地理解致密生物系统带来了新的希望。在此,我们结合了厘米级模型活性固体的实验研究、基于智能体模型的数值研究以及理论论证,以揭示一种新的集体驱动形式,以及机械张力如何作为在不同集体驱动模式之间转换的通用机制。来回改变张力时出现的滞后现象突出了集体驱动的非平凡选择性。