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Automated minimization of optical path difference and reference mirror focus in white-light interference microscope objective

机译:自动最小化白光干涉显微镜物镜中的光程差和参考镜焦点

摘要

Average fringe contrast is determined by PSI measurements at each step of relatively large translations of the reference optics and mirror of a white-light Linnik interference objective and the resulting data are used to minimize the OPD between the reference and test beam paths of the instrument. Utilizing the same algorithms used in the art to perform conventional vertical scanning interferometry, the position of minimum OPD is determined by finding the position of maximum average fringe contrast. Furthermore, by automating the system with a precise translation mechanism, operator-to-operator variations are completely eliminated and the precision of the process of OPD minimization is greatly improved. In another embodiment of the invention, the optimal focal position of the reference mirror is found at the same time by calculating the average lateral variation of fringe contrast as a function of OPD and focal position. The optimal OPD and focal position correspond to the maximum average lateral variation of fringe contrast in the resulting three-dimensional space.
机译:平均条纹对比度由参考光学器件和白光Linnik干涉物镜的相对较大平移的每一步的PSI测量确定,所得结果用于最小化仪器参考光路和测试光路之间的OPD。利用本领域中使用的相同算法来执行常规的垂直扫描干涉测量,通过找到最大平均条纹对比度的位置来确定最小OPD的位置。此外,通过使用精确的翻译机制使系统自动化,完全消除了操作员之间的差异,大大提高了OPD最小化过程的精度。在本发明的另一个实施例中,通过计算作为OPD和焦点位置的函数的条纹对比度的平均横向变化来同时找到参考镜的最佳焦点位置。最佳OPD和焦点位置对应于所得三维空间中条纹对比度的最大平均横向变化。

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