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A novel differential optical beam deflection detection system for measuring laser-generated surface acoustic waves

机译:一种用于测量激光产生的表面声波的新型差分光学束偏转检测系统

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As the application of the laser ultrasonics developed rapidly, there is especial call for more sensitive and convenient optical installation to detect the ultrasonic waves induced by pulsed laser. The optical beam deflection (OBD) methods have abstracted the interest of people for many years for their merits over the interference method. In this paper a novel differential OBD detection system for measuring laser-generated surface acoustic waves (SAW) is presented. The detection principle of this optical system is discussed in detail according to the scheme. And we get the linear relation between the physical parameter of the SAW and the output of the detection system. For confirm the conclusion the Monte Carlo computation method is utilized to simulate the ray propagation in the system, adding the consideration of the light spot distribution of the detection laser. The numerical result agrees with the analytic method. The linear relation between the detection system output current and the deflection angle induced by SAW is validated. Furthermore, the sensitivity and the spatial resolution of the system proposed are also calculated for comparing with the other OBD methods. The results show that this differential optical beam deflection detection system is more sensitive to the small disturbance and has higher space resolution. It has considerable potential in ultrasonic measurement.
机译:随着激光超声波的应用迅速发展,特别呼叫更敏感和方便的光学安装,以检测由脉冲激光引起的超声波。光学束偏转(OBD)方法摘要多年来对人们的兴趣进行干扰方法。本文介绍了一种用于测量激光产生的表面声波(SAW)的新型微分OBD检测系统。根据该方案详细讨论了该光学系统的检测原理。我们得到了锯的物理参数与检测系统的输出之间的线性关系。为了确认结论,利用蒙特卡罗计算方法模拟系统中的射线传播,添加了检测激光的光点分布的考虑。数值结果与分析方法一致。验证了检测系统输出电流与锯引起的偏转角之间的线性关系。此外,还计算了系统的灵敏度和空间分辨率,用于与其他OBD方法进行比较。结果表明,该差分光束偏转检测系统对小扰动更敏感,并且具有更高的空间分辨率。超声波测量具有相当大的潜力。

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