Phononic crystal sensors

R. Lucklum
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引用次数: 8

Abstract

A phononic crystal device is investigated as a sensor platform combining band gap engineering with resonant transmission. A slit cavity perpendicular to the propagation direction of ultrasound and placed in the middle of a phononic crystal causes a peak in the transmission spectrum with the peak frequency strongly dependent on the speed of sound of the liquid filling the slit. A resonant transmission peak through a plate regularly perforated by holes arranged in square lattice can also be found in case of normal incidence of sound. In this arrangement the peak frequency is strongly dependent on speed of sound of the liquid surrounding the plate and filling the holes. These findings are the basis of two resonant liquid sensor platforms based on phononic crystals.
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声子晶体传感器
研究了一种声子晶体器件作为带隙工程与谐振传输相结合的传感平台。垂直于超声波传播方向并置于声子晶体中间的狭缝腔在透射光谱中产生一个峰值,其峰值频率强烈依赖于填充狭缝的液体的声速。在声音正常入射的情况下,也可以发现通过方形点阵孔有规则穿孔的板的共振透射峰。在这种排列中,峰值频率强烈地依赖于围绕板和填充孔的液体的声速。这些发现是两种基于声子晶体的谐振液体传感器平台的基础。
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