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Performance Criteria in Low Coherence Speckle Interferometry (LCSI)

机译:低相干散斑干涉术(LCSI)的性能标准

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Electronic Speckle Pattern Interferometry with a light source of short coherence length allows depth-resolved deformation analysis below the surface of light-scattering objects (Low Coherence Speckle Interferometry - LCSI). Interference is tuned to a thin layer - called the coherence layer - by appropriate adjustment of the length of the reference path. The quality of the results is degraded by background light from outside the coherence layer and by de-correlations due to the passage of the useful light through regions that have been altered by the overall deformation field. Basic experimental studies are conducted on a simple two-interface object (two roughened surfaces of glass slides) to determine the effects that one interface (and its deformation) exerts on the quality of the deformation measurement in the other interface. Analytical theoretical calculations of speckle de-correlation on the basis of Fresnel diffraction provide comparative data.
机译:具有短相干长度的光源的电子散斑干涉仪可以在光散射物体表面以下进行深度分辨的变形分析(低相干散斑干涉仪-LCSI)。通过适当调整参考路径的长度,可以将干扰调整为一个薄层-相干层。由于来自相干层外部的背景光以及由于有用光穿过已被整体形变场改变的区域而导致的去相关,结果质量会下降。在一个简单的两界面对象(载玻片的两个粗糙表面)上进行了基础实验研究,以确定一个界面(及其变形)对另一个界面的变形测量​​质量的影响。基于菲涅耳衍射的斑点去相关的理论分析计算提供了比较数据。

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