首页> 外文会议>27th Annual Boulder Damage Symposium: Laser-Induced Damage in Optical Materials: 1995 >High-efficiency dielectric multilayer gratings optimized for manufacturability and laser damage threshold
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High-efficiency dielectric multilayer gratings optimized for manufacturability and laser damage threshold

机译:针对可制造性和激光损伤阈值进行了优化的高效介电多层光栅

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Abstract: Ultrashort pulse, high-intensity lasers offer new opportunities for the study of light-matter interaction and for inertial confinement fusion. A 100 Terawatt laser operating at 400 fs and 1.053 $mu@m is operational at LLNL, and a 1000 Terawatt (Petawatt) laser will come online in early 1996. These lasers use large-aperture (40 cm and 94 cm diameter, respectively) diffraction gratings to compress the amplified laser pulse. At present, holographically produced, gold overcoated photoresist gratings are used: these gratings represent the fuse in the laser chain. Higher laser damage thresholds and higher diffraction efficiencies are theoretically possible with multilayer dielectric gratings (MDG's). A number of design parameters regarding both the multilayer stack and the etched grating structure can be optimized to maximize the laser damage threshold and also improve the processing latitude for the interference lithography and reactive ion etching steps used during manufacture of these gratings. This paper presents model predictions for the behavior of hafnia/silica MDG's both during processing and in operation, and presents experimental data on the diffraction efficiency and short-pulse laser damage threshold for optimized witness gratings.!28
机译:摘要:超短脉冲高强度激光器为光-物质相互作用的研究和惯性约束聚变提供了新的机会。 LLNL的工作频率为400 fs的100太瓦激光和1.053 $μm的激光,1996年初将投入使用1000太瓦(Petawatt)激光。这些激光使用大孔径(直径分别为40 cm和94 cm)衍射光栅以压缩放大的激光脉冲。目前,使用全息生产的镀金的光致抗蚀剂光栅:这些光栅代表激光链中的保险丝。理论上,多层介质光栅(MDG)可以实现更高的激光损伤阈值和更高的衍射效率。可以优化与多层堆叠和蚀刻的光栅结构有关的许多设计参数,以最大化激光损伤阈值,并且还改善在这些光栅的制造期间使用的干涉光刻和反应性离子蚀刻步骤的处理范围。本文介绍了氧化ha /二氧化硅MDG在加工和操作过程中的行为的模型预测,并提供了有关优化目镜的衍射效率和短脉冲激光损伤阈值的实验数据!28

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