论文标题
流体动力学对活性胶体的液体脱粒过渡的影响
Hydrodynamic effects on the liquid-hexatic transition of active colloids
论文作者
论文摘要
我们从数值上研究流体动力学在活动胶体在中间活性下的活性胶体液体过渡中的作用,在运动中没有发生运动诱导的相分离(MIPS)。我们表明,在有活性的布朗颗粒(ABP)的情况下,过渡的临界密度在增加粒子的质量时会降低,增强顺序,而自我刺激在所考虑的活动状态中具有相反的效果。相反,主动流体动力颗粒(AHP)比相应的ABP以更高的填充分数$ ϕ $进行液体效应过渡,这表明流体动力学具有使系统无序的净效应。在越来越多的密度,接近六角液的跃迁时,我们在AHP的情况下发现了自我维持的有组织运动的出现,粒子簇一致地移动。
We study numerically the role of hydrodynamics in the liquid-hexatic transition of active colloids at intermediate activity, where motility induced phase separation (MIPS) does not occur. We show that in the case of active Brownian particles (ABP), the critical density of the transition decreases upon increasing the particle's mass, enhancing ordering, while self-propulsion has the opposite effect in the activity regime considered. Active hydrodynamic particles (AHP), instead, undergo the liquid-hexatic transition at higher values of packing fraction $ϕ$ than the corresponding ABP, suggesting that hydrodynamics have the net effect of disordering the system. At increasing densities, close to the hexatic-liquid transition, we found in the case of AHP the appearance of self-sustained organized motion with clusters of particles moving coherently.