论文标题

最小磁性微观运动器的推进和能量

Propulsion and energetics of a minimal magnetic microswimmer

论文作者

Calero, Carles, García-Torres, José, Ortiz-Ambriz, Antonio, Sagués, Francesc, Pagonabarraga, Ignacio, Tierno, Pietro

论文摘要

在本手稿中,我们描述了由铁磁性纳米棒和顺磁微球组成的最小杂种微型威格斯的实现。在应用摇摆磁场后,将无界的对在水中推进,该磁场诱导了两个组成元件的周期性相对运动,其中纳米棒旋转并在顺磁球的表面上旋转并载玻片。合在一起时,旋转和滑动过程描述了参数空间中的有限区域,该区域随施加场的频率而增加。我们开发了一种理论方法,并将其与数值模拟相结合,这使我们能够理解螺旋桨的动力学并解释实验观察结果。此外,我们通过改变模型预测的改变纳米棒的长度来证明微型威格斯速度的逆转。最后,我们从理论上和实验中确定了这种最小磁微功能的灯塔的能量效率。

In this manuscript we describe the realization of a minimal hybrid microswimmer, composed of a ferromagnetic nanorod and a paramagnetic microsphere. The unbounded pair is propelled in water upon application of a swinging magnetic field that induces a periodic relative movement of the two composing elements, where the nanorod rotates and slides on the surface of the paramagnetic sphere. When taken together, the processes of rotation and sliding describe a finite area in the parameter space, which increases with the frequency of the applied field. We develop a theoretical approach and combine it with numerical simulations, which allow us to understand the dynamics of the propeller and explain the experimental observations. Furthermore, we demonstrate a reversal of the microswimmer velocity by varying the length of the nanorod, as predicted by the model. Finally, we determine theoretically and in experiments the Lighthill's energetic efficiency of this minimal magnetic microswimmer.

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