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Reduction of effect of DOE's diffraction efficiency via optical-digital joint design

机译:通过光学节目设计减少DOE衍射效率的影响

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Diffractive optical elements can simplify the system structure due to their unique negative dispersion properties for imaging systems. It is difficult for single-layer diffractive optical elements (SLDOEs) to maintain high diffraction efficiency over a wide waveband. We propose a design method using optical-digital joint design to reduce the image blur caused by low diffraction efficiency. This method directly and clearly images in the waveband of higher diffraction efficiency, and indirectly images through imaging reconstruction in the waveband of lower diffraction efficiency. A point spread function model considering the effect of roughness on diffraction efficiency during processing is proposed to recovery the blurred image. We design a dual waveband infrared imaging system using SLDOE for 3.7μm~4.8μm and 7.7μm~10μm. The MTF for each field of view at 17 lp/mm are respectively greater than 0.7 and 0.5. The reconstructed image of LWIR is obviously subjectively clearer than the original image, and multiple evaluation function values are better than the original image. The results show that the design method can improve the image blur caused by reduced diffraction efficiency and SLDOEs can be applied to the design of dual waveband infrared imaging systems.
机译:由于其用于成像系统的独特负分散性,衍射光学元件可以简化系统结构。单层衍射光学元件(SLDOOS)难以在宽波段上保持高衍射效率。我们提出了一种使用光学节目设计的设计方法,以减少由低衍射效率引起的图像模糊。该方法直接且清晰地在较高衍射效率的波段中的图像,通过在较低衍射效率的波段中进行成像重建的间接图像。考虑粗糙度粗糙度对处理期间衍射效率的影响的点传播功能模型被提出回收模糊图像。我们使用SLDOE设计双波带红外成像系统3.7μm〜4.8μm,7.7μm〜10μm。在17LP / mm处的每个视野的MTF分别大于0.7和0.5。 LWIR的重建图像显然比原始图像明显更清晰,并且多个评估函数值优于原始图像。结果表明,设计方法可以改善由降低的衍射效率引起的图像模糊,并且SLDOOS可以应用于双波带红外成像系统的设计。

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