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Dynamics of levitated objects in acoustic vortex fields

机译:悬浮物体在声涡流中的动力学

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摘要

Acoustic levitation in gaseous media provides a tool to process solid and liquid materials without the presence of surfaces such as container walls and hence has been used widely in chemical analysis, high-temperature processing, drop dynamics and bioreactors. To date high-density objects can only be acoustically levitated in simple standing-wave fields. Here we demonstrate the ability of a small number of peripherally placed sources to generate acoustic vortex fields and stably levitate a wide range of liquid and solid objects. The forces exerted by these acoustic vortex fields on a levitated water droplet are observed to cause a controllable deformation of the droplet and/or oscillation along the vortex axis. Orbital angular momentum transfer is also shown to rotate a levitated object rapidly and the rate of rotation can be controlled by the source amplitude. We expect this research can increase the diversity of acoustic levitation and expand the application of acoustic vortices.
机译:气态介质中的声悬浮提供了一种处理固体和液体材料而没有诸如容器壁等表面的工具,因此已被广泛用于化学分析,高温处理,液滴动力学和生物反应器。迄今为止,高密度物体只能在简单的驻波场中进行声学悬浮。在这里,我们演示了少数外围放置的源产生声涡流场并稳定悬浮各种液体和固体物体的能力。观察到由这些声涡流场施加在悬浮的水滴上的力会导致液滴的可控变形和/或沿着涡流轴的振荡。还显示了轨道角动量传递,可以使悬浮的物体快速旋转,并且旋转速率可以由源振幅控制。我们希望这项研究可以增加声悬浮的多样性,并扩大声涡的应用。

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