论文标题
手性活动物质的旅行乐队,云和涡流
Traveling Bands, Clouds, and Vortices of Chiral Active Matter
论文作者
论文摘要
我们考虑具有相位滞后的非本地归一化对准相互作用的自属性颗粒的随机动力学。滞后的作用是间接产生手性在粒子运动中。为了理解大规模行为,我们得出了具有宏观尺度的活性布朗粒子(ABP)流的连续描述,以偏微分方程(PDE)的形式用于单粒子概率密度函数(DF)。由于间接的手性,我们发现了该类别方程的新的空间均质非平稳分析解决方案。我们对这种解决方案的动力学理论的发展揭示了存在多种空间非均匀模式的存在,使人联想到线性活动物质的行进频带,云和涡流结构。因此,我们的模型可能是理解手性活动媒体的性质并设计具有指定行为的多基因群的基础。
We consider stochastic dynamics of self-propelled particles with nonlocal normalized alignment interactions subject to phase lag. The role of the lag is to indirectly generate chirality into particle motion. To understand large scale behavior, we derive a continuum description of an active Brownian particle (ABP) flow with macroscopic scaling in the form of a partial differential equation (PDE) for a one-particle probability density function (DF). Due to indirect chirality, we find a new spatially homogeneous nonstationary analytic solution for this class of equations. Our development of kinetic and hydrodynamic theories towards such a solution reveals the existence of a wide variety of spatially nonhomogeneous patterns reminiscent of the traveling bands, clouds, and vortical structures of linear active matter. Our model may thereby serve as the basis for understanding the nature of chiral active media and designing multiagent swarms with designated behavior.