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Speckle interferometry using fiber optic phase stepping

机译:使用光纤相位步进的斑点干涉法

摘要

A system employing closed-loop phase-stepping is used to measure the out-of-plane deformation of a diffusely reflecting object. Optical fibers are used to provide reference and object beam illumination for a standard two-beam speckle interferometer, providing set-up flexibility and ease of alignment. Piezoelectric fiber-stretchers and a phase-measurement/servo system are used to provide highly accurate phase steps. Intensity data is captured with a charge-injection-device camera, and is converted into a phase map using a desktop computer. The closed-loop phase-stepping system provides 90 deg phase steps which are accurate to 0.02 deg, greatly improving this system relative to open-loop interferometers. The system is demonstrated on a speckle interferometer, measuring the rigid-body translation of a diffusely reflecting object with an accuracy + or - 10 deg, or roughly + or - 15 nanometers. This accuracy is achieved without the use of a pneumatically mounted optics table.
机译:使用采用闭环相位步进的系统来测量漫反射物体的平面外变形。光纤用于为标准的两光束散斑干涉仪提供参考光束和物镜照明,从而提供设置灵活性和易于对准的特性。压电纤维拉伸器和相位测量/伺服系统用于提供高度精确的相位步进。用电荷注入装置的照相机捕获强度数据,并使用台式计算机将其转换为相图。闭环相位步进系统提供了90度的相位步进,精确到0.02度,相对于开环干涉仪而言,大大改善了该系统。该系统在散斑干涉仪上进行了演示,可以以+或-10度或大约+或-15纳米的精度测量漫反射物体的刚体平移。无需使用气动安装的光学平台就可以达到这种精度。

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