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首页> 外文期刊>Applied optics >Design and experimental evaluation of enhanced diffraction efficiency of lanthanum-based material coated laminar-type gratings in the boron K-emission region
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Design and experimental evaluation of enhanced diffraction efficiency of lanthanum-based material coated laminar-type gratings in the boron K-emission region

机译:硼k-排放区镧系基层材料涂层层型光栅型增强衍射效率的设计与实验评价

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摘要

Numerical and experimental studies have been performed to evaluate the enhancement of diffraction efficiency of diffraction gratings around B K-emission by overcoating lanthanum series layers on conventional metal-coated laminar-type gratings. We propose an optical design method based on the concept of spectral flux given by collection efficiency and diffraction efficiency. Adiffraction grating with a small angle of incidence provides an advantage to soft x-ray spectrographs because it collects the emission at a larger solid angle compared to that of conventional grazing incidence diffraction gratings. Numerical calculations indicated that La and LaF3 were promising as overcoating materials on a laminar-type Ni-coated diffraction grating, and we performed an experimental study using LaF3 and La/C overcoatings, considering their producibility and durability. The diffraction efficiencies were measured using a reflectometer at a synchrotron facility. The diffraction efficiencies observed at 183.4 eV were 29.4% and 34.3% at angles of incidence of 85.1 degrees and 84.9 degrees for Ni/LaF3 and Ni/La/C gratings, respectively. (C) 2021 Optical Society of America
机译:通过数值和实验研究,评估了在传统的金属涂层层流型光栅上涂覆镧系层对BK发射附近衍射光栅衍射效率的提高。我们提出了一种基于收集效率和衍射效率给出的光谱通量概念的光学设计方法。小入射角的衍射光栅为软x射线光谱仪提供了一个优势,因为与传统掠入射衍射光栅相比,它以更大的立体角收集发射。数值计算表明,La和LaF3有望作为层状镍涂层衍射光栅的涂层材料,考虑到LaF3和La/C涂层的可生产性和耐久性,我们对其进行了实验研究。衍射效率是在同步加速器设备上用反射计测量的。对于Ni/LaF3和Ni/La/C光栅,在183.4eV下观察到的衍射效率分别为29.4%和34.3%,入射角分别为85.1度和84.9度。(2021)美国光学学会

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  • 来源
    《Applied optics》 |2021年第16期|共7页
  • 作者单位

    Tohoku Univ Inst Multidisciplinary Res Adv Mat Aoba Ku 2-1-1 Katahira Sendai Miyagi 9808577 Japan;

    Natl Inst Quantum &

    Radiol Sci &

    Technol Kansai Photon Sci Inst Quantum Beam Sci Directorate 8-1-7 Umemidai Kizugawa Kyoto 6190215 Japan;

    Tohoku Univ Inst Multidisciplinary Res Adv Mat Aoba Ku 2-1-1 Katahira Sendai Miyagi 9808577 Japan;

    Natl Inst Quantum &

    Radiol Sci &

    Technol Kansai Photon Sci Inst Quantum Beam Sci Directorate 8-1-7 Umemidai Kizugawa Kyoto 6190215 Japan;

    Shimadzu Co Ltd Device Dept Nakagyo Ku 1 Nishinokyo Kuwabaracho Kyoto Kyoto 6048511 Japan;

    Shimadzu Co Ltd Device Dept Nakagyo Ku 1 Nishinokyo Kuwabaracho Kyoto Kyoto 6048511 Japan;

    Shimadzu Co Ltd Device Dept Nakagyo Ku 1 Nishinokyo Kuwabaracho Kyoto Kyoto 6048511 Japan;

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  • 正文语种 eng
  • 中图分类 应用;
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