论文标题
用$ q $ - 折叠离散对称性羊群:Active Potts模型中的频段到车道过渡
Flocking with a $q$-fold discrete symmetry: band-to-lane transition in the active Potts model
论文作者
论文摘要
我们在二维晶格上研究了$ q $ - 州活动的POTTS模型(APM),在该晶格中,自propelled粒子具有与$ Q $运动方向相对应的$ q $内部状态。受铁磁性$ q $ - 状态模型启发的局部对齐规则,并根据内部粒子状态通过偏置扩散的自我启动,导致高密度和低噪声的集体运动。我们制定了模型的粗粒度流体动力学理论,计算APM的相图,$ Q = 4 $和$ Q = 6 $,并探索该地区的羊群动力学,其中高密度(极性液体)相交的相交是低密度(气体)相位和形成相干移动颗粒的波动条纹的相位。作为粒子自行速度的函数,揭示了相位分离的轮廓从横向带运动到纵向车道形成的新型重新定向转变,这在Vicsek模型中不存在,而APM在$ Q = 2 $的$ q = 2 $中是不存在的(Active Ising模型)。这种重新定向转变的起源是通过稳定性分析获得的:对于大速度,横向扩散常数接近零并稳定泳道。最后,我们进行了微观模拟,以证实有关植入和重新定位转变的分析预测,并验证APM的相图。
We study the $q$-state active Potts model (APM) on a two-dimensional lattice in which self-propelled particles have $q$ internal states corresponding to the $q$ directions of motion. A local alignment rule inspired by the ferromagnetic $q$-state Potts model and self-propulsion via biased diffusion according to the internal particle states leads to a collective motion at high densities and low noise. We formulate a coarse-grained hydrodynamic theory of the model, compute the phase diagrams of the APM for $q=4$ and $q=6$ and explore the flocking dynamics in the region, in which the high-density (polar liquid) phase coexists with the low-density (gas) phase and forms a fluctuating stripe of coherently moving particles. As a function of the particle self-propulsion velocity, a novel reorientation transition of the phase-separated profiles from transversal band motion to longitudinal lane formation is revealed, which is absent in the Vicsek model and APM for $q=2$ (active Ising model). The origin of this reorientation transition is obtained via a stability analysis: for large velocities, the transverse diffusion constant approaches zero and stabilizes lanes. Finally, we perform microscopic simulations that corroborate our analytical predictions about the flocking and reorientation transitions and validate the phase diagrams of the APM.