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Vertical jetting induced by shear horizontal leaky surface acoustic wave on 36° Y-X LiTaO3

机译:36°Y-X LIAO3上的剪切水平泄漏表面声波引起的垂直喷射

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摘要

Shear horizontal surface acoustic waves (SH-SAWs) have been regarded as a good candidate for liquid sensing applications, but being inefficient in fluid manipulation due to a minimal fluid coupling between the fluid and acoustic waves. However, in this letter, a vertical jetting function was realized using the SH-SAW generated from a 36°Y-X LiTaO3 SAW device. The jetting of the droplet induced by the SH-SAWs was observed nearly along vertical direction, and the aspect ratio of the liquid beam is proportional to the applied power before breaking up, which is dramatically different from those generated from the conventional Rayleigh SAWs. By conducting theoretical simulation and experimental investigation on the SH-SAWs systematically, we concluded that the wave/energy pressure dissipated into the sessile droplets causes this vertical ejection on the device surface.
机译:剪切水平表面声波(SH-SAW)被认为是液体传感应用的良好选择,但由于流体和声波之间的流体耦合最小,因此在流体操纵方面效率不高。然而,在这封信中,使用由36°Y-X LiTaO3 SAW装置生成的SH-SAW实现了垂直喷射功能。几乎在垂直方向上观察到了由SH-SAW引起的液滴的喷射,并且液束的纵横比与破裂前所施加的功率成正比,这与常规Rayleigh SAW产生的液滴截然不同。通过对SH-SAW进行系统的理论模拟和实验研究,我们得出的结论是,消散在固着液滴中的波/能量压力会导致器件表面的垂直喷射。

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