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Frequency dependence of surface acoustic wave swimming

机译:声表面波游泳的频率依赖性

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摘要

Surface acoustic waves (SAWs) are elastic waves that can be excited directly on the surface of piezoelectric crystals using a transducer, leading to their exploitation for numerous technological applications, including for example microfluidics. Recently, the concept of SAW streaming, which underpins SAW microfluidics, was extended to make the first experimental demonstration of ‘SAW swimming’, where instead of moving water droplets on the surface of a device, SAWs are used as a propulsion mechanism. Using theoretical analysis and experiments, we show that the SAW swimming force can be controlled directly by changing the SAW frequency, due to attenuation and changing force distributions within each SAW streaming jet. Additionally, an optimum frequency exists which generates a maximum SAW swimming force. The SAW frequency can therefore be used to control the efficiency and forward force of these SAW swimming devices. The SAW swimming propulsion mechanism also mimics that used by many microorganisms, where propulsion is produced by a cyclic distortion of the body shape. This improved understanding of SAW swimming provides a test-bed for exploring the science of microorganism swimming, and could bring new insight to the evolutionary significance for the length and beating frequency of swimming microbial flagella.
机译:表面声波(SAW)是一种弹性波,可以使用换能器直接在压电晶体的表面上激发,从而将其用于多种技术应用,包括微流体。最近,扩展了声表面波流的概念,此概念是声表面波微流技术的基础,已被广泛用于进行“声表面波游泳”的首次实验演示,在该实验中,声表面波代替了在设备表面上移动水滴,而是将其用作推进机制。使用理论分析和实验,我们表明,由于衰减和改变了每个SAW流射流中的力分布,可以通过更改SAW频率直接控制SAW游泳力。另外,存在产生最大SAW游动力的最佳频率。因此,SAW频率可用于控制这些SAW游泳装置的效率和前向力。 SAW游泳推进机制还模仿了许多微生物所使用的机制,在这种情况下,身体形状的周期性变形会产生推进作用。对SAW游泳的这种更好的理解为探索微生物游泳的科学提供了实验平台,并可能为游泳微生物鞭毛的长度和跳动频率的进化意义带来新的见解。

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