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Study of broadband propagation characteristic of quasi-fractal phononic crystal for enhanced sensing applications

机译:用于增强传感应用的准分形声子晶体的宽带传播特性研究

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This paper reports on bulk acoustic wave (BAW) resonators with quasi-fractal perforations for increased sensitivity in bio-sensing applications and on the broadband transmission line (TL) model of such resonators. Fractal perforations are implemented in BAW resonators to increase their surface area-to-volume ratio and to thereby enhance the sensitivity. We found that a further improvement is expected at higher resonance frequencies for the quasi-fractal phononic crystal (PnC) we have designed. This particular PnC has local resonances entailing strongly dispersive effective acoustic properties. Therefore, we have modeled the device implementing this PnC as a broadband dispersive transmission line (TL) to account for all the essential modes of longitudinal resonance. Our measurements, in very good agreement with this model, confirm the existence of the propagation mode in the PnC with enhanced projected sensitivity.
机译:本文报道了具有准分形穿孔的体声波(BAW)谐振器,以提高生物传感应用中的灵敏度,并报道了此类谐振器的宽带传输线(TL)模型。在BAW谐振器中实现了分形穿孔,以增加其表面积与体积之比,从而提高灵敏度。我们发现,对于我们设计的准分形声子晶体(PnC),在更高的谐振频率下有望得到进一步的改善。这种特定的PnC具有局部共振,需要强烈分散的有效声学特性。因此,我们将实现此PnC的设备建模为宽带色散传输线(TL),以解决纵向共振的所有基本模式。我们的测量与该模型非常吻合,证实了PnC中传播模式的存在,并具有增强的投射灵敏度。

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