Schimming Cody D, Reichhardt C J O, Reichhardt C
Theoretical Division and Center for Nonlinear Studies, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Phys Rev E. 2023 Jul;108(1):L012602. doi: 10.1103/PhysRevE.108.L012602.
Using a minimal continuum model, we investigate the interplay between circular confinement and substrate friction in active nematics. Upon increasing the friction from low to high, we observe a dynamical phase transition from a circulating flow phase to an anisotropic flow phase in which the flow tends to align perpendicular to the nematic director at the boundary. We demonstrate that both the flow structure and dynamic correlations in the latter phase differ from those of an unconfined, active turbulent system and may be controlled by the prescribed nematic boundary conditions. Our results show that substrate friction and geometric confinement act as valuable control parameters in active nematics.
我们使用一个最小连续介质模型,研究了活性向列相中圆形约束与基底摩擦之间的相互作用。随着摩擦力从低到高增加,我们观察到一个动力学相变,即从循环流动相转变为各向异性流动相,在该相中,流动倾向于在边界处垂直于向列指向矢排列。我们证明,后一相中的流动结构和动力学关联与无约束的活性湍流系统不同,并且可能由规定的向列边界条件控制。我们的结果表明,基底摩擦和几何约束在活性向列相中起着重要的控制参数作用。