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Dual interferometric displacement measurement system incorporating a Wollaston interferometer

机译:具有沃拉斯顿干涉仪的双干涉性位移测量系统

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A new optical displacement measurement system is presented using a dual interferometric design where a Wollaston prism interferometer is employed in conjunction with a normal Michelson interferometer. This is configured without the use of external polarizers, apart from those associated with the Wollaston prism. It is shown that an optical path difference induced in the Michelson interferometer can be detected using the Wollaston prism in a normal interferometer arrangement, despite the different modes of operation of the two interferometers (the Michelson splits input light by amplitude whereas the Wollaston prism splits light by polarization). Further, the interference pattern produced by the Wollaston prism interferometer changes in a measurable, linear fashion as the optical path difference from the Michelson interferometer alters, and as a result of the shape of the interference pattern, the need for calibration is reduced since a reference point is produced by the zero optical path difference point at the center of the Wollaston prism. A simple theoretical analysis of the system is presented and used to derive a computer model of the optical arrangement. Results from an experimental implementation of the system, using a Wollaston prism with a beam separation of 0.5 degrees and a superluminescent diode, of wavelength 825 nm, as a light source, are included and compared to the results from the computer model.
机译:使用双干涉测量设计来提出新的光学位移测量系统,其中沃拉斯顿棱镜干涉仪与普通迈克尔逊干涉仪一起使用。除了与与沃斯顿棱镜相关联的人之外,可以在不使用外部偏振器的情况下进行配置。结果表明,尽管两个干涉仪的操作模式不同,但是在正常的干涉仪布置中可以使用硅藻土棱镜在迈克隆干涉仪中引起的光路径差(迈克尔顿通过幅度分裂输入光,而Wollaston Prism分裂光通过极化)。此外,由沃斯顿棱镜干涉仪产生的干涉图案以可测量的线性方式改变,作为与迈克森干涉仪改变的光路径,并且由于干涉图案的形状,因此自参考以来减少了对校准的需求点是由沃斯顿棱镜中心的零光路差点产生的。提出了对系统的简单理论分析,并用于导出光学布置的计算机模型。包括使用0.5度的光束分离的Wollaston棱镜的系统的实验实施,并将波长825nm的光束分离为光源,并与计算机模型的结果进行比较。

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