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Effects of birefringence on Fizeau interferometry that uses a polarization phase-shifting technique

机译:双折射对使用偏振相移技术的菲索干涉仪的影响

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摘要

Interferometers that use different states of polarization for the reference and the test beams can modulate the relative phase shift by using polarization optics in the imaging system. Thus the interferometer can capture simultaneous images that have a fixed phase shift, which can be used for phase-shifting interferometry. As all measurements are made simultaneously, the interferometer is not sensitive to vibration. Fizeau interferometers of this type have an advantage compared with Twyman-Green-type systems because they are common-path interferometers. However, a polarization Fizeau interferometer is not strictly common path when both wavefronts are transmitted by an optic that suffers from birefringence. The two polarized beams see different phases owing to birefringence; as a result, an error can be introduced in the measurement. We study the effect of birefringence on measurement accuracy when different polarization techniques are used in Fizeau interferometers. We demonstrate that measurement error is reduced dramatically and can be eliminated if the reference and test beams are circularly polarized rather than linearly polarized.
机译:对参考光束和测试光束使用不同偏振状态的干涉仪可以通过在成像系统中使用偏振光学器件来调制相对相移。因此,干涉仪可以捕获具有固定相移的同时图像,该图像可以用于相移干涉术。由于所有测量都是同时进行的,因此干涉仪对振动不敏感。与Twyman-Green型系统相比,这种Fizeau干涉仪具有优势,因为它们是共路径干涉仪。但是,当两个波阵面都是通过双折射光学器件传输时,偏振菲索干涉仪并不是严格的通用路径。由于双折射,两个偏振光束的相位不同。结果,会在测量中引入误差。我们研究了在Fizeau干涉仪中使用不同的偏振技术时双折射对测量精度的影响。我们证明,如果参考光束和测试光束是圆偏振光而不是线性偏振光,则测量误差会大大降低,并且可以消除。

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