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Titania-a 10 20W cm-2 ultraviolet laser

机译:Titania-a 10 20W cm-2紫外线激光

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The Titania laser system, based around a 42 cm e-beam pumped KrF amplifier, is currently being installed at the Rutherford Appleton Laboratory and will come on line as a user facility in 1996. Like Sprite, its predecessor, it will operate in both CPA (249 nm) and Raman (268 nm) short-pulse modes, delivering up to 10 TW to target in high-quality beams. With brightness expected to reach 10 21 W cm-2 sterad-1, it will be the world's brightest ultraviolet laser. The design of the Titania system includes a number of novel features. The multi-pass Ti:sapphire front-end amplifier uses an unusual beam-folding scheme. The Raman system will involve the first application of Raman multiplexing, combining high KrF efficiency with low transport cost. Reflective coatings with very high damage thresholds are being developed for the CPA compressor gratings and the UV transport optics. A windowless configuration for the final Raman amplifier is presently under analysis, to allow the performance of this maximally stressed component to be extended substantially. Finally the design of the Titania e-beam machine, featuring novel split-cathode diodes, has resulted in unusually high efficiency of electron transport into the laser gas. The laser's infrastructure has involved sophisticated mechanical and electrical design, and a computerized diagnostic, control and safety package is being developed to allow one-man operation of the whole 1000 m2 installation.
机译:Titania激光系统基于42厘米电子束泵浦KrF放大器,目前正在卢瑟福·阿普尔顿实验室安装,并将于1996年作为用户设施投入使用。其前身Sprite一样,将在两个CPA中运行(249 nm)和拉曼(268 nm)短脉冲模式,可在高质量光束中提供高达10 TW的目标。预计亮度将达到10 21 W cm-2 sterad-1,它将成为世界上最明亮的紫外线激光器。 Titania系统的设计包括许多新颖的功能。多通道Ti:蓝宝石前端放大器使用一种不寻常的光束折叠方案。拉曼系统将涉及拉曼多路复用的首次应用,它将高KrF效率与低传输成本结合在一起。正在为CPA压缩机光栅和UV传输光学器件开发具有非常高的损伤阈值的反射涂层。当前正在对最终拉曼放大器的无窗配置进行分析,以使该最大受力组件的性能得到大幅扩展。最终,采用新型分体式阴极二极管的Titania电子束机器的设计,使电子向激光气体的传输效率异常高。激光器的基础设施涉及复杂的机械和电气设计,并且正在开发计算机诊断,控制和安全软件包,以允许一人操作整个1000平方米的安装。

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