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Anamorphic and spatial frequency dependent phase modulation on liquid crystal displays: optimization of the modulation diffraction efficiency

机译:液晶显示器上依赖于变形和空间频率的相位调制:调制衍射效率的优化

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摘要

In this work we present experimental evidence of an anamorphic and spatial frequency dependent phase modulation in commercially available twisted nematic liquid crystal spatial light modulators. We have found that the phase modulation depth depends on the magnitude of the local spatial frequency component along the horizontal direction. Along the vertical direction the phase modulation depth does not depend on the spatial frequency. This phenomenon is related with the electronics driving the device and in no way related to liquid crystal physics. It causes a reduction of the optical efficiency of a diffractive optical element displayed onto this type of modulator. We present an algorithm to correct this effect and more efficiently display a diffractive optical element. We apply it to the particular case of a Fresnel lens. Experimental results that confirm the improvements in the efficiency of the displayed diffractive lens are presented.
机译:在这项工作中,我们提供了在商用扭曲向列液晶空间光调制器中依赖于变形和空间频率的相位调制的实验证据。我们已经发现,相位调制深度取决于沿水平方向的局部空间频率分量的大小。沿着垂直方向,相位调制深度不取决于空间频率。这种现象与驱动设备的电子设备有关,与液晶物理学无关。这导致显示在这种类型的调制器上的衍射光学元件的光学效率降低。我们提出一种算法来纠正这种影响,并更有效地显示衍射光学元件。我们将其应用于菲涅尔透镜的特殊情况。实验结果证实了所显示的衍射透镜效率的提高。

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