Department of Physics, New York University, 4 Washington Place, New York, NY 10003, USA.
Science. 2013 Feb 22;339(6122):936-40. doi: 10.1126/science.1230020. Epub 2013 Jan 31.
Spontaneous formation of colonies of bacteria or flocks of birds are examples of self-organization in active living matter. Here, we demonstrate a form of self-organization from nonequilibrium driving forces in a suspension of synthetic photoactivated colloidal particles. They lead to two-dimensional "living crystals," which form, break, explode, and re-form elsewhere. The dynamic assembly results from a competition between self-propulsion of particles and an attractive interaction induced respectively by osmotic and phoretic effects and activated by light. We measured a transition from normal to giant-number fluctuations. Our experiments are quantitatively described by simple numerical simulations. We show that the existence of the living crystals is intrinsically related to the out-of-equilibrium collisions of the self-propelled particles.
细菌菌落或鸟类群的自发形成是活性物质中自我组织的例子。在这里,我们展示了在合成光活化胶体颗粒悬浮液中由非平衡驱动力产生的自我组织形式。它们导致二维“活晶体”形成、破裂、爆炸并在其他地方重新形成。动态组装是由颗粒的自推进和分别由渗透压和电泳效应诱导的吸引力相互作用之间的竞争以及由光激活引起的。我们测量了从正常到巨数波动的转变。我们的实验通过简单的数值模拟进行了定量描述。我们表明,活晶体的存在与自推进颗粒的非平衡碰撞本质上相关。