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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >The frequency-dependent directivity of a planar fabry-perot polymer film ultrasound sensor
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The frequency-dependent directivity of a planar fabry-perot polymer film ultrasound sensor

机译:平面法布里-珀罗聚合物薄膜超声传感器的频率相关方向性

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A model of the frequency-dependent directivity of a planar, optically-addressed, Fabry-Perot (FP), polymer film ultrasound sensor is described and validated against experimental directivity measurements made over a frequency range of 1 to 15 MHz and angles from normal incidence to 80deg. The model may be used, for example, as a predictive tool to improve sensor design, or to provide a noise-free response function that could be deconvolved from sound-field measurements in order to improve accuracy in high-frequency metrology and imaging applications. The specific question of whether effective element sizes as small as the optical-diffraction limit can be achieved was investigated. For a polymer film sensor with a FP cavity of thickness d, the minimum effective element radius was found to be about 0.9d, and that an illumination spot radius of less than d/4 is required to achieve it
机译:描述并验证了平面,光学寻址的Fabry-Perot(FP)聚合物薄膜超声传感器的频率相关方向性模型,并针对在1至15 MHz频率范围内以及与法线入射角成角度的实验方向性测量进行了验证至80度该模型可以用作例如改进传感器设计的预测工具,或提供可以从声场测量中解卷积的无噪声响应函数,以提高高频计量和成像应用的准确性。研究了是否可以实现有效尺寸的元件到光学衍射极限的小问题。对于厚度为d的FP腔的聚合物薄膜传感器,发现最小有效元件半径约为0.9d,并且需要小于d / 4的照明光斑半径

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