Improvement of Optical Probe Response to Large-Amplitude Ultrasound

M. Shimada, T. Yoshii
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Abstract

An ultrasound detection system with optical heterodynes shows nonlinear behavior in the large-amplitude region (>λ/8, λ: wavelength of detecting light), and entails some problems in the measurement of laser ultrasound (ultrasound generated by laser deposition), especially for thin specimens. We studied the mechanism of the nonlinear response and found a method for improving it. Through experiments, we devised an improved demodulation method using signal processing techniques to extract actual ultrasonic waveforms in the large-amplitude region, and confirmed its effectiveness. We also carried out numerical experiments to investigate the characteristics of our improved demodulation method and the standard demodulation method. The results show that compared with the standard demodulation method, our method is more robust against noise of beat signals. and more useful for measuring laser ultrasound even in the small-amplitude region.
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光学探头对大振幅超声响应的改进
光学外差超声检测系统在大振幅区(>λ/8, λ:检测光的波长)表现出非线性行为,这给激光超声(激光沉积产生的超声)的测量带来了一些问题,特别是对薄样品的测量。我们研究了非线性响应的机理,并找到了改进的方法。通过实验,我们设计了一种改进的解调方法,利用信号处理技术提取大振幅区域的实际超声波形,并验证了其有效性。通过数值实验研究了改进的解调方法和标准解调方法的特点。结果表明,与标准解调方法相比,该方法对拍频信号的噪声具有更强的鲁棒性。更适用于小振幅区域的激光超声测量。
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