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首页> 外文期刊>Journal of optics >Pixel-addressable phase calibration of spatial light modulators: a common-path phase-shifting interferometric microscopy approach
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Pixel-addressable phase calibration of spatial light modulators: a common-path phase-shifting interferometric microscopy approach

机译:空间光调制器的像素可寻址相位校准:公共路径相移干涉过滤器显微镜方法

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摘要

As spatial light modulators (SLMs) are becoming flexible and the preferred device for light steering, the SLM's modulation calibration still remains challenging. No pixel-addressable measurement of the SLM has yet been practically implemented. We present a quantitative phase measurement and calibration method for a parallel aligned liquid crystal spatial light modulator (PAL-SLM) based on Pancharatnam phase-shifting interferometric microscopy. The pixel-wise phase of SLM can be detected from microscopic interference pattern formed from two orthogonally polarized light waves reflected off the PAL-SLM. The wave phase is modulated or non-modulated depending on its polarization direction parallel or orthogonal to the liquid crystal director. Owing to self-referencing common-path interferometric microscopic imaging, the proposed method is quite robust against environmental disturbance and enables a high-precision pixel-wise characterization of SLM.
机译:随着空间光调制器(SLMS)变得柔韧,并且优选的光转向装置,SLM的调制校准仍然仍然具有挑战性。 实际上,没有SLM的像素可寻址测量。 我们介绍了基于Pancharatnam相移干涉过滤器显微镜的平行对准液晶空间光调制器(PAL-SLM)的定量相位测量和校准方法。 可以从由两个正交偏振光形成的微观干涉图案中检测SLM的像素 - 明显相位。 根据其偏振方向并平行或正交的液晶导向器的偏振方向调制或未调制波相。 由于自引用公共路径干涉测定显微镜成像,所提出的方法对环境干扰非常稳健,并且能够实现SLM的高精度像素。

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