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电容式微机械超声换能器(CMUT)阵列中的瑞利-布洛赫波。

Rayleigh-Bloch waves in CMUT arrays.

作者信息

Atalar Abdullah, Köymen Hayrettin, Oğuz H Kağan

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2014 Dec;61(12):2139-48. doi: 10.1109/TUFFC.2014.006610.

Abstract

Using the small-signal electrical equivalent circuit of a capacitive micromachined ultrasonic transducer (CMUT) cell, along with the self and mutual radiation impedances of such cells, we present a computationally efficient method to predict the frequency response of a large CMUT element or array. The simulations show spurious resonances, which may degrade the performance of the array. We show that these unwanted resonances are due to dispersive Rayleigh-Bloch waves excited on the CMUT surface-liquid interface. We derive the dispersion relation of these waves for the purpose of predicting the resonance frequencies. The waves form standing waves at frequencies where the reflections from the edges of the element or the array result in a Fabry-Pérot resonator. High-order resonances are eliminated by a small loss in the individual cells, but low-order resonances remain even in the presence of significant loss. These resonances are reduced to tolerable levels when CMUT cells are built from larger and thicker plates at the expense of reduced bandwidth.

摘要

利用电容式微机械超声换能器(CMUT)单元的小信号等效电路,以及此类单元的自辐射阻抗和互辐射阻抗,我们提出了一种计算效率高的方法来预测大型CMUT元件或阵列的频率响应。模拟结果显示了杂散共振,这可能会降低阵列的性能。我们表明,这些不需要的共振是由于在CMUT表面 - 液体界面上激发的色散瑞利 - 布洛赫波引起的。为了预测共振频率,我们推导了这些波的色散关系。这些波在元件或阵列边缘的反射导致法布里 - 珀罗谐振器的频率处形成驻波。单个单元中的小损耗消除了高阶共振,但即使存在显著损耗,低阶共振仍然存在。当CMUT单元由更大更厚的板制成时,这些共振会降低到可容忍的水平,但代价是带宽减小。

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