Pinçe Erçağ, Velu Sabareesh K P, Callegari Agnese, Elahi Parviz, Gigan Sylvain, Volpe Giovanni, Volpe Giorgio
Department of Physics, Bilkent University, Çankaya, 06800 Ankara, Turkey.
Laboratoire Kastler Brossel, Université Pierre et Marie Curie, École Normale Supérieure, CNRS, College de France, 24 rue Lhomond, 75005 Paris, France.
Nat Commun. 2016 Mar 9;7:10907. doi: 10.1038/ncomms10907.
Living active matter systems such as bacterial colonies, schools of fish and human crowds, display a wealth of emerging collective and dynamic behaviours as a result of far-from-equilibrium interactions. The dynamics of these systems are better understood and controlled considering their interaction with the environment, which for realistic systems is often highly heterogeneous and disordered. Here, we demonstrate that the presence of spatial disorder can alter the long-term dynamics in a colloidal active matter system, making it switch between gathering and dispersal of individuals. At equilibrium, colloidal particles always gather at the bottom of any attractive potential; however, under non-equilibrium driving forces in a bacterial bath, the colloids disperse if disorder is added to the potential. The depth of the local roughness in the environment regulates the transition between gathering and dispersal of individuals in the active matter system, thus inspiring novel routes for controlling emerging behaviours far from equilibrium.
诸如细菌菌落、鱼群和人群等活性物质系统,由于远离平衡态的相互作用,展现出丰富多样的新兴集体动态行为。考虑到这些系统与环境的相互作用,其动力学能得到更好的理解和控制,而对于现实系统而言,环境往往高度异质且无序。在此,我们证明空间无序的存在能够改变胶体活性物质系统中的长期动力学,使其在个体聚集和分散之间切换。在平衡态下,胶体粒子总是聚集在任何吸引势的底部;然而,在细菌浴中的非平衡驱动力作用下,如果在势场中加入无序因素,胶体就会分散。环境中局部粗糙度的深度调节着活性物质系统中个体聚集和分散之间的转变,从而为控制远离平衡态的新兴行为开辟了新途径。