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Dispersion of the Retardation of a Photoelastic Modulator

机译:光弹性调制器的延迟色散

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Recently, ellipsometry and polarization imaging using photoelastic modulators (PEMs) have been applied to a wide spectral range, from vacuum ultraviolet to the mid-infrared wavelengths. To ensure high accuracy polarization performance, the accurate calibration of the retardation of PEM is crucial. In this report, the dispersion of the retardation of the PEM is studied. According to the operational principle of PEM, their retardation can be separated into independent dispersion and driving terms. The effect attributed to the dispersion on PEM retardation calibration is experimentally explored. These experiments indicate that the dispersion term can be defined in advance using the refractive index of the photoelastic crystal under incident light, and that the driving term is directly proportional to the amplitude of the driving voltage. The calibration method for the retardation amplitude of the PEM, which considers dispersion, is also demonstrated. The results show that the relative deviation between the calibration and actual measurement values of PEM retardation amplitude are less than 1%. This study presents an accurate way to calibrate the PEM retardation and supports the application of PEMs in a wide range of wavelengths.
机译:最近,使用光弹性调制器(PEM)的椭圆偏振法和偏振成像已应用于从真空紫外到中红外波长的宽光谱范围。为了确保高精度的偏振性能,准确校准PEM的延迟至关重要。在此报告中,研究了PEM延迟的分散。根据PEM的工作原理,可以将它们的延迟分为独立的色散和驱动项。实验研究了分散体对PEM延迟校准的影响。这些实验表明,可以使用光弹性晶体在入射光下的折射率来预先定义色散项,并且驱动项与驱动电压的幅度成正比。还演示了考虑到色散的PEM延迟幅度的校准方法。结果表明,PEM延迟幅度的校准值与实际测量值之间的相对偏差小于1%。这项研究提出了一种校准PEM延迟的准确方法,并支持PEM在宽波长范围内的应用。

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