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Emergent hydrodynamic bound states between magnetically powered micropropellers

机译:电动微型螺旋桨之间的紧急流体动力结合态

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摘要

Hydrodynamic interactions (HIs), namely, solvent-mediated long-range interactions between dispersed particles, play a crucial role in the assembly and dynamics of many active systems, from swimming bacteria to swarms of propelling microrobots. We experimentally demonstrate the emergence of long-living hydrodynamic bound states between model microswimmers at low Reynolds numbers. A rotating magnetic field forces colloidal hematite microparticles to translate at a constant and frequency-tunable speed close to a bounding plane in a viscous fluid. At high driving frequency, HIs dominate over magnetic dipolar ones, and close propelling particles couple into bound states by adjusting their translational speed to optimize the transport of the pair. The physical system is described by considering the HIs with the boundary surface and the effect of gravity, providing an excellent agreement with the experimental data for all the range of parameters explored. Moreover, we show that in dense suspensions, these bound states can be extended to one-dimensional arrays of particles assembled by the sole HIs. Our results manifest the importance of the boundary surface in the interaction and dynamics of confined propelling microswimmers.
机译:流体动力学相互作用(HIs),即分散颗粒之间的溶剂介导的远程相互作用,在许多活动系统的组装和动力学中都发挥着至关重要的作用,从游动细菌到大量微型机器人。我们实验证明了在低雷诺数下模型微泳者之间长寿命流体动力学结合态的出现。旋转磁场迫使胶体赤铁矿微粒在粘性流体中以接近边界平面的恒定且频率可调的速度平移。在高驱动频率下,HI比磁偶极子更占优势,并且紧密推进的粒子通过调节其平移速度来优化对的传输,从而耦合为束缚态。通过考虑具有边界表面的HI和引力的影响来描述物理系统,从而为探索的所有参数范围的实验数据提供了极好的一致性。此外,我们表明,在致密的悬浮液中,这些结合态可以扩展到由单个HI组装的粒子的一维阵列。我们的结果表明边界表面在密闭推进微游泳器的相互作用和动力学中的重要性。

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