论文标题
无偏的交流场中活性颗粒的倒沉降
Inverted Sedimentation of Active Particles in Unbiased ac Fields
论文作者
论文摘要
控制活性颗粒运动的控制对于从目标货物递送到纳米医学的应用至关重要。尽管最近已经取得了许多进展,以基于外力,集中力或光强度的梯度来控制主动运动,这些方向或光强度都有明确的方向或偏见,但对于如何在无法实现永久性偏见的情况下如何将活动粒子引导。在这里,我们表明,时间平均水平消失的交流场为转向活动粒子提供了替代途径。我们为重力场中的惯性活性颗粒举例说明了这一途径,观察到它们很大一部分在切开AC场时持续在向上行驶,从而导致封闭容器的顶壁倒置沉积物。我们的结果提供了一种通用的控制原则,该原则将来可以用于引导主动运动,指导集体行为和净化混合物。
Gaining control over the motion of active particles is crucial for applications ranging from targeted cargo delivery to nanomedicine. While much progress has been made recently to control active motion based on external forces, flows or gradients in concentration or light intensity, which all have a well-defined direction or bias, little is known about how to steer active particles in situations where no permanent bias can be realized. Here, we show that ac fields with a vanishing time average provide an alternative route to steering active particles. We exemplify this route for inertial active particles in a gravitational field, observing that a substantial fraction of them persistently travels in the upward direction upon switching on the ac field, resulting in an inverted sedimentation profile at the top wall of a confining container. Our results offer a generic control principle which could be used in the future to steer active motion, to direct collective behaviors and to purify mixtures.