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Laser-induced damage in multilayer dielectric gratings due to ultrashort laser pulses

机译:超短激光脉冲对多层介质光栅的激光损伤

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Abstract: Chirped pulse amplification is increasingly used to produce intense ultrashort laser pulses. When high efficiency gratings are the dispersive element, as in the LLNL Petawatt laser, their susceptibility to laser induced damage constitutes a limitation on the peak intensities that can be reached. To obtain robust gratings, it is necessary to understand the causes of short-pulse damage, and to recognize the range of design options for high efficiency gratings. Metal gratings owe their high efficiency to their high conductivity. To avoid the inevitable light absorption that accompanies conductivity, we have developed designs for high efficiency reflection gratings that use only transparent dielectric materials. These combine the reflectivity of a multilayer dielectric stack with a diffraction grating. We report here our present understanding of short-pulse laser induced damage, as it applies to dielectric gratings. !7
机译:摘要:pulse脉冲放大越来越多地用于产生强烈的超短激光脉冲。当像LLNL Petawatt激光器那样高效的光栅是色散元件时,它们对激光引起的损伤的敏感性就限制了可达到的峰值强度。为了获得坚固的光栅,有必要了解短脉冲损坏的原因,并认识到高效光栅的设计选择范围。金属光栅的高效率归因于其高导电性。为避免导电性带来的不可避免的光吸收,我们开发了仅使用透明介电材料的高效反射光栅的设计。这些将多层电介质叠层的反射率与衍射光栅结合在一起。我们在这里报告我们目前对短脉冲激光引起的损伤的理解,因为它适用于介电光栅。 !7

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