论文标题

具有外部诱导的周期性双极运动及其合作运动的活性胶体

Active colloid with externally induced periodic bipolar motility and its cooperative motion

论文作者

Kato, Airi N., Takeuchi, Kazumasa A., Sano, Masaki

论文摘要

活性物理学已经开发出各种类型的自构颗粒,包括具有极性和双极运动及以后的颗粒。但是,到目前为止,实验实现的双极运动是沿轴随机或在固有频率下周期性的。在这里,我们报告了另一种双极活动颗粒,其周期性的双极自行形态以可控频率为外部设置。我们使用了Quincke辊 - 在AC电场下而不是通常使用的DC场下方,悬挂在电场驱动的液体驱动的液体中的介电颗粒。在实验上观察到单个粒子在外部频率下的往复运动,理论上将其表征为稳定的周期性运动。在实验上,我们不仅观察到往复运动的运动,还观察到非平凡的活性布朗粒子(ABP)类似于长期尺度的持久运动。这导致了零频率附近的洛伦兹频谱,这并非由Quincke辊的常规模型的简单扩展到AC场。发现可以通过考虑实验系统中的顶部不对称性来重现ABP样运动。此外,我们发现旋转扩散系数比热的扩散系数大得多,这在先前的实验中也报道了,这可能是由于电极表面粗糙度所致。我们还发现了小簇的自组织形成,例如双重和三重群,并表征了其中的粒子的合作运动。此处报道的AC Quincke辊可能是双极活动物质的模型实验系统,这似乎值得进一步研究。

Active matter physics has been developed with various types of self-propelled particles, including those with polar and bipolar motility and beyond. However, the bipolar motions experimentally realized so far have been either random along the axis or periodic at intrinsic frequencies. Here we report another kind of bipolar active particles, whose periodic bipolar self-propulsion is set externally at a controllable frequency. We used Quincke rollers -- dielectric particles suspended in a conducting liquid driven by an electric field -- under an AC electric field instead of the usually used DC field. Reciprocating motion of a single particle at the external frequency was observed experimentally and characterized theoretically as stable periodic motion. Experimentally, we observed not only the reciprocating motion but also non-trivial active Brownian particle (ABP)-like persistent motion in a long time scale. This resulted in a Lorentzian spectrum around zero frequency, which is not accounted for by a simple extension of the conventional model of Quincke rollers to the AC field. It was found that ABP-like motion can be reproduced by considering the top-bottom asymmetry in the experimental system. Moreover, we found a rotational diffusion coefficient much larger than the thermal one, as also reported in previous experiments, which may have resulted from roughness of the electrode surface. We also found self-organized formation of small clusters, such as doublets and triplets, and characterized cooperative motion of particles therein. The AC Quincke rollers reported here may serve as a model experimental system of bipolar active matter, which appears to deserve further investigations.

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