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External measurement of dihedral right angles with cyclic optical configuration

机译:具有循环光学配置的二面角直角的外部测量

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摘要

A new technique for external measurement of dihedral right angles is presented. An expanded, collimated, and linearly polarized He-Ne laser beam (632.8 nm) from a Fizeau interferometer is launched into a cyclic path optical configuration (CPOC) in which the counterpropagating p and s polarization components traverse the same optical path in opposite directions. A right-angled component (RAC), with its plane surfaces forming the right angle, is set to externally reflect the counterpropagating p and s components of the CPOC in nearly the same directions but with a lateral separation. In a plane normal to the right-angle edge of the RAC, the laterally separated collimated beams have angular separation, which is equal to twice the error in the dihedral right angle. Another CPOC setup is used to recombine the beams by reducing the lateral shear to zero. Error in right angle is calculated from the spacing of the resulting two-beam Fizeau fringes. Methods for overcoming the restriction of measurement accuracy due to beam aperture limitation and the effects of the positional tilt of the RAC have been discussed. Results of validation experiments are presented.
机译:提出了一种外部测量二面角直角的新技术。来自菲索(Fizeau)干涉仪的扩展,准直和线偏振He-Ne激光束(632.8 nm)被发射到循​​环光路(CPOC)中,其中反向传播的p和s偏振分量沿相反的方向穿过同一条光路。直角分量(RAC)(其平面表面形成直角)设置为在几乎相同的方向上以横向间隔向外反射CPOC的反向传播的p和s分量。在垂直于RAC直角边缘的平面中,横向分离的准直光束的角度间隔等于二面角直角误差的两倍。另一种CPOC设置用于通过将横向剪切力减小到零来重新组合梁。根据所得的两束菲索条纹的间距计算出直角误差。讨论了克服由于束孔径限制和RAC位置倾斜的影响而导致的测量精度限制的方法。给出了验证实验的结果。

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