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首页> 外文期刊>Applied optics >Modulation light efficiency of diffractive lenses displayed in a restricted phase-mostly modulation display
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Modulation light efficiency of diffractive lenses displayed in a restricted phase-mostly modulation display

机译:在受限相位的调制显示器中显示的衍射透镜的调制光效率

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摘要

We present an analysis of the diffraction efficiency of diffractive lenses displayed on spatial light modulators that depends on the modulation response of the display. An ideal display would produce continuous phase-only modulation, reaching a maximum phase-modulation depth of 2π. We introduce the concept of modulation diffraction efficiency that accounts for the effect of nonlinearities only in the phase modulation of the display. We review a diffractive model with which to evaluate this modulation efficiency, including modulation defects such as nonlinear phase modulation, coupled amplitude modulation, phase quantization, and a limited modulation depth. We apply this diffractive model to Fresnel lenses and show that these modulation defects produce a lens multiplex effect. Finally we demonstrate that the application of a minimum Euclidean projection principle leads to high modulation diffraction efficiency even if the phase-modulation depth is much less than 2π. We demonstrate that the modulation efficiency can exceed 90% for a modulation depth of 1.4π and can exceed 40% (the equivalent for a binary phase element) for a modulation depth of only 0.7π. Experimental results from use of a twisted nematic liquid-crystal display are presented to confirm these conclusions.
机译:我们提出了一种对显示在空间光调制器上的衍射透镜的衍射效率的分析,这取决于显示器的调制响应。理想的显示器将产生连续的仅相位调制,达到2π的最大相位调制深度。我们介绍了调制衍射效率的概念,该概念仅在显示器的相位调制中考虑了非线性的影响。我们回顾了一种用于评估这种调制效率的衍射模型,其中包括诸如非线性相位调制,耦合幅度调制,相位量化和有限的调制深度之类的调制缺陷。我们将此衍射模型应用于菲涅耳透镜,并表明这些调制缺陷会产生透镜多重效应。最后,我们证明了最小欧几里得投影原理的应用导致了高调制衍射效率,即使相位调制深度远小于2π。我们证明,对于1.4π的调制深度,调制效率可以超过90%,而对于仅0.7π的调制深度,调制效率可以超过40%(等效于二进制相位元素)。提出了使用扭曲向列液晶显示器的实验结果,以证实这些结论。

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