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State diagram of a three-sphere microswimmer in a channel

机译:一个三个球体microWimmer的状态图

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Geometric confinements are frequently encountered in soft matter systems and in particular significantly alter the dynamics of swimming microorganisms in viscous media. Surface-related effects on the motility of microswimmers can lead to important consequences in a large number of biological systems, such as biofilm formation, bacterial adhesion and microbial activity. On the basis of low-Reynolds-number hydrodynamics, we explore the state diagram of a three-sphere microswimmer under channel confinement in a slit geometry and fully characterize the swimming behavior and trajectories for neutral swimmers, puller- and pusher-type swimmers. While pushers always end up trapped at the channel walls, neutral swimmers and pullers may further perform a gliding motion and maintain a stable navigation along the channel. We find that the resulting dynamical system exhibits a supercritical pitchfork bifurcation in which swimming in the mid-plane becomes unstable beyond a transition channel height while two new stable limit cycles or fixed points that are symmetrically disposed with respect to the channel mid-height emerge. Additionally, we show that an accurate description of the averaged swimming velocity and rotation rate in a channel can be captured analytically using the method of hydrodynamic images, provided that the swimmer size is much smaller than the channel height.
机译:软质系统经常遇到几何限制,特别是显着改变粘性介质中游泳微生物的动态。表面相关的效果对微温的动力可能导致大量生物系统中的重要后果,例如生物膜形成,细菌粘附和微生物活性。在低雷诺数流体动力学的基础上,我们在狭缝几何形状的渠道限制下探讨了三个球体微倍的状态图,并充分表征了中性游泳运动员,拉动和推动式游泳运动员的游泳行为和轨迹。虽然推动者总是最终被困在沟道墙壁上,但是中性游泳者和拉拔器可以进一步执行滑动运动并沿着通道保持稳定的导航。我们发现所得到的动态系统表现出超临界张大炉分叉分叉,其中在中间平面中的游泳变得超越过渡通道高度,而两个新的稳定极限循环或固定点相对于通道中间高度进行对称地设置。另外,我们表明,可以使用流体动力学图像的方法分析地捕获通道中平均游泳速度和旋转速率的准确描述,只要游泳运动员尺寸远小于信道高度。

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