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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Surface shape measurement for a multilayered object by synthesis of optical coherence function
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Surface shape measurement for a multilayered object by synthesis of optical coherence function

机译:通过光学相干函数合成来测量多层物体的表面形状

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An interferometric system is proposed by synthesis of the optical coherence function for measuring surface shapes of multiple planes in a multilayered transparent object. By stepwise optical frequency modulation of a laser source, the system synthesizes the optical coherence function into a delta function-like peak at an arbitrary depth, and the depth of the peak can be adjusted by changing the frequency modulation parameter. In this way, the interference of a reference with the reflection at each target surface can be selectively extracted, and the shapes of the target surfaces can then be obtained by means of fringe analysis such as the Fourier transform (FT) method. An experimental demonstration is presented and performance degradation factors are discussed.
机译:通过合成光学相干函数,提出了一种用于测量多层透明物体中多个平面的表面形状的干涉仪系统。通过对激光源进行逐步的光学频率调制,该系统将光学相干函数合成为任意深度处的类似三角函数的峰值,并且可以通过更改频率调制参数来调整峰值深度。以此方式,可以选择性地提取参考对每个目标表面处的反射的干扰,然后可以通过诸如傅立叶变换(FT)方法的条纹分析来获得目标表面的形状。进行了实验演示,并讨论了性能下降因素。

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