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Design and analysis of broadband high-efficiency pulse compression gratings

机译:宽带高效脉冲压缩光栅的设计与分析

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摘要

We report on two effective methods, multiparameter optimization and local optimization combined with the diffraction bandwidth merit function, to design a broadband pulse compression grating (PCG), and we present broadband, high-efficiency PCGs based on both the multilayer dielectric grating (MDG) and metal-multilayer dielectric grating (MMDG) models. For MDG, the average diffraction efficiency is higher than 97.5percent for TE polarization light over the 100 nm bandwidth centered at 800 nm. Moreover, a novel multilayer structure, which comprises higher index material in the high-reflectivity mirror and relatively lower index material on top, is first proposed to yield higher average efficiency, broader bandwidth, and excellent fabrication tolerance. For MMDG, it exhibits an ultra-broadband top-hat diffraction spectrum with average efficiency exceeding 97percent over the 200 nm wavelength wide centered at 1053 nm. In addition, the MMDG structure, which has the best tolerance for grating fabrication, is determined by investigating characteristics of MMDGs with different thin-film structures.
机译:我们报告了两种有效的方法,即多参数优化和局部优化并结合了衍射带宽优值函数,以设计宽带脉冲压缩光栅(PCG),并且我们提出了基于多层介电光栅(MDG)的宽带高效PCG。和金属多层介质光栅(MMDG)模型。对于MDG,在以800 nm为中心的100 nm带宽上,TE偏振光的平均衍射效率高于97.5%。此外,首先提出了一种新颖的多层结构,其在高反射率镜中包括较高折射率的材料并且在顶部包括相对较低折射率的材料,以产生较高的平均效率,较宽的带宽和优异的制造公差。对于MMDG,它具有超宽带礼帽式衍射光谱,在以1053 nm为中心的200 nm波长处,平均效率超过97%。另外,通过研究具有不同薄膜结构的MMDG的特性来确定对光栅制造具有最佳耐受性的MMDG结构。

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