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Towards high-optical-strength, fluorine-resistant coatings for intracavity KrF laser optics

机译:朝向高光学强度,致力耐氟激光光学器件

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摘要

Intracavity optics of e-beam-pumped high-energy KrF lasers should survive in a hostile environment of simultaneous irradiation by intensive UV laser light, scattered electrons, bremsstrahlung X-ray radiation, and permanent etching by a fluorine-containing working gas mixture. The present paper is focused on the research and development of high-optical-strength and fluorine-resistant AR coatings capable of protecting the fused silica windows and HR rare mirrors of these lasers against fluorine attack. The most promising coatings deposited by e-beam evaporation were NdF3-based compositions, which have low water content, good resistance to fluorine, and demonstrated the highest damage thresholds for AR coatings 29.8 J/cm(2) in a large irradiation spot. Outstanding "water-free" coatings of MgF2 and Al2O3 were deposited by CO2 laser evaporation with preliminary laser treatment of substrates. (C) 2020 Optical Society of America
机译:E-Beam泵浦的高能量KRF激光器的腔内光学器件应在密集的UV激光,散射电子,Bremsstrahlung X射线辐射和通过含氟的工作气体混合物的永久蚀刻来生存在同时照射的敌对环境中。 本文专注于能够保护这些激光器的熔融二氧化硅窗口和HR稀有镜的高光学强度和氟耐氟涂层的研究和开发。 通过电子束蒸发沉积的最有前景的涂层是基于NDF3的组合物,其具有低含水量,良好的氟抗氟,并在大照射点中显示了Ar涂层29.8J / cm(2)的最高损伤阈值。 通过CO 2激光蒸发与初步激光处理底物的CO 2激光蒸发沉积MGF2和Al2O3的出色“无水”涂层。 (c)2020美国光学学会

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  • 来源
    《Applied optics》 |2020年第5期|共8页
  • 作者单位

    Russian Acad Sci Lebedev Phys Inst 53 Leninskii Pr Moscow 119991 Russia;

    Russian Acad Sci Shubnikov Inst Crystallog Fed Sci Res Ctr Crystallog &

    Photon 59 Leninskii Pr Moscow 119333 Russia;

    St Petersburg State Univ Informat Technol Mech &

    49 Kronverkskii Pr St Petersburg 1971001 Russia;

    Russian Acad Sci Lebedev Phys Inst 53 Leninskii Pr Moscow 119991 Russia;

    Russian Acad Sci Lebedev Phys Inst 53 Leninskii Pr Moscow 119991 Russia;

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