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High-energy krypton fluoride lasers for inertial fusion

机译:用于惯性聚变的高能氟化rypto激光器

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摘要

Laser fusion researchers have realized since the 1970s that the deep UV light from excimer lasers would be an advantage as a driver for robust high-performance capsule implosions for inertial confinement fusion (ICF). Most of this research has centered on the krypton-fluoride (KrF) laser. In this article we review the advantages of the KrF laser for direct-drive ICF, the history of high-energy KrF laser development, and the present state of the art and describe a development path to the performance needed for laser fusion and its energy application. We include descriptions of the architecture and performance of the multi-kilojoule Nike KrF laser-target facility and the 700 J Electra high-repetition-rate KrF laser that were developed at the U.S. Naval Research Laboratory. Nike and Electra are the most advanced KrF lasers for inertial fusion research and energy applications.
机译:自1970年代以来,激光聚变研究人员就已经意识到,受激准分子激光器发出的深紫外光将成为惯性约束聚变(ICF)的强大高性能胶囊内爆的驱动器。这项研究大部分集中在氟化rypto(KrF)激光器上。在本文中,我们回顾了用于直接驱动ICF的KrF激光器的优势,高能KrF激光器发展的历史以及现有技术,并描述了实现激光聚变及其能量应用所需性能的发展途径。我们将介绍由美国海军研究实验室开发的多千焦耐克KrF激光目标设施和700 J Electra高重复频率KrF激光器的结构和性能。耐克和伊莱克特拉是最先进的KrF激光器,用于惯性聚变研究和能源应用。

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