Bertin Eric, Droz Michel, Grégoire Guillaume
Department of Theoretical Physics, University of Geneva, CH-1211 Geneva 4, Switzerland.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Aug;74(2 Pt 1):022101. doi: 10.1103/PhysRevE.74.022101. Epub 2006 Aug 2.
We study analytically the emergence of spontaneous collective motion within large bidimensional groups of self-propelled particles with noisy local interactions, a schematic model for assemblies of biological organisms. As a central result, we derive from the individual dynamics the hydrodynamic equations for the density and velocity fields, thus giving a microscopic foundation to the phenomenological equations used in previous approaches. A homogeneous spontaneous motion emerges below a transition line in the noise-density plane. Yet, this state is shown to be unstable against spatial perturbations, suggesting that more complicated structures should eventually appear.
我们通过分析研究了具有噪声局部相互作用的二维大型自驱动粒子群中自发集体运动的出现,这是一个生物有机体集合的示意模型。作为核心结果,我们从个体动力学推导出了密度和速度场的流体动力学方程,从而为先前方法中使用的唯象方程提供了微观基础。在噪声 - 密度平面中的一条转变线以下会出现均匀的自发运动。然而,这种状态被证明对空间扰动是不稳定的,这表明最终应该会出现更复杂的结构。