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Simultaneous encoding of amplitude apodizers and Fresnel lenses in spatial light modulators

机译:空间光调制器中同时编码幅度升级器和菲涅耳透镜

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In this paper we show a technique to simultaneously encode a Fresnel lens and an amplitude filter in a single diffractive optical element (DOE) displayed on a spatial light modulator (SLM). In particular we have displayed this new DOE, which we call amplitude apodized Fresnel lens (AAFL), on a twisted nematic liquid-crystal SLM (TN-LCSLM) working in the phase-only regime. The programmability of the AAFL permits to change dynamically its focal length and its action on the point-spread function (PSF) of an optical system. We provide a method to encode the complex amplitude information of the AAFL on a phase-only function. We also demonstrate how to compensate for the inherent equivalent apodizing effect due to the pixelated structure of SLMs. Different types of AAFLs, such as transverse apodizing AAFL and transverse hyperresolving AAFL are implemented. The excellent quantitative agreement between experimental and numerical results shows the feasibility of AAFLs on a phase-only SLM.
机译:在本文中,我们示出了一种在空间光调制器(SLM)上显示的单个衍射光学元件(DOE)中的菲涅耳透镜和幅度滤波器的技术。特别地,我们已经展示了这种新的DOE,我们将振幅减少的菲涅耳透镜(AAF1)呼叫在唯一的相位制度中工作的扭曲的向志液晶SLM(TN-LCSLM)。 AAFL的可编程性允许动态地改变其焦距及其对光学系统的点扩展功能(PSF)的动作。我们提供了一种方法来在阶段函数上编码AAFL的复杂幅度信息。我们还演示了如何补偿由于SLM的像素化结构引起的固有等效间隔效果。实施了不同类型的AAFL,例如横向抛光AAF1和横向超溶解AAF1。实验性和数值结果之间的优异定量协议表明AAFLS在仅相位的SLM上的可行性。

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