一种基于散射干扰效应的表面检测方法

Z. Tan, Yun Huang, Suyong Wu, Xiaobao Zhang, Yibo Zhang
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引用次数: 0

摘要

光散射是光学表面检测的一种重要而经典的方法。典型的光散射测量方案通常采用单光束入射,然后通过检测和分析散射信号来评估表面质量。本文提出并论证了一种基于散射干涉效应的光学表面检测方法。该方法将单纵模激光束分成两束,当两束光束照射到光学表面时,各自的散射场会相互干扰。如果周期性地扫描这些入射光之间的相位,它们的散射光干涉信号将同时波动。通过对这类散射信号的分析,我们的方法不仅可以确定光学表面的散射损失,而且可以衡量其非均匀性。建立了一套简单的实验装置,并使用单模激光作为光源来演示该方法。此外,为了调制两个入射光束之间的相位差,使用了压电陶瓷。对一些典型案例进行了实验和讨论,结果表明,该方法可用于光学表面质量的标定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A developed method for surface testing based on the scattering interference effect
Light scattering is an important and classical method for optical surface testing. Typical scheme of light scattering measurement often uses a single laser beam incidence, and then evaluates the surface quality via detecting and analyzing the scattering signal. In this work, a developed method for optical surface testing is proposed and demonstrated, and whose measuring principle is based on the scattering interference effect. In this approach, a single longitudinal mode laser beam is divided into two beams, when these beams irradiate the optical surface, their respective scattering fields would interfere with each other. If the phase between these incidence lights is scanned periodically, their scattering light interference signal would fluctuate simultaneously. Through analyzing this kind of scattering signal, our method can not only determine the scattering loss of optical surface, but also scale its inhomogeneity performance. A simply set of experimental apparatus is built up and used to demonstrated this method, which uses a single mode laser as the light source. Furthermore, to modulate the phase difference between two incidence beams, a piezoelectric ceramic is used. Some typical cases are then experimented and discussed, the results show that this method can be used to calibrate the quality of optical surface.
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