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REP-RATED X-RAY DAMAGE AND ABLATION EXPERIMENTS FOR IFE AND ICF APPLICATIONS

机译:IFE和ICF应用的REC级X射线损坏和消融实验

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The response of materials to high-dose x-ray exposures needs to be understood for inertial fusion energy (IFE) and inertial confinement fusion applications, where the requirements for IFE are considerably more stringent. In the IFE context, x-ray damage and/or small levels of ablation are of importance for component survivability, generation of debris, and contamination. Ablation quantities of even 1 angstrom per shot would result in material removal of more than 1 cm per year of operation If even one part in a million of this material made its way to the final optics, it would coat them with a thickness equivalent to several waves of the laser light. Also, small-scale melting and thermomechan-ical effects, such as fatigue, can result from x-ray heating. These effects potentially become important when multiple shots are considered, and thus, their study requires use of rep-rated experiments. As a part of the High-Average Power Laser Program, the XAPPER experiment has been initiated at Lawrence Livermore National Laboratory. XAPPER produces high doses of low-energy x-rays at repetition rates of up to 10 Hz. Study of x-ray damage is underway. An overview of facility capabilities, results to date, and future plans are provided.
机译:对于惯性融合能量(IFE)和惯性矛盾融合应用,需要理解材料对高剂量X射线暴露的响应,其中IFE的要求比较严格。在IFE语境中,X射线损伤和/或小水平消融对于组分生存能力,碎片的产生和污染是重要的。每次射击均匀1埃的消融量将导致每年甚至每年均匀的材料去除超过1厘米,如果甚至一百万这种材料进入最终光学器件,它将涂覆到几个厚度的厚度激光的波浪。此外,小型熔化和热电工 - 诸如疲劳的效果可能是由X射线加热产生的。当考虑多次镜头时,这些效果可能变得重要,因此,他们的研究需要使用REP级实验。作为高平均功率激光计划的一部分,Xapper实验已在劳伦斯利弗莫尔国家实验室启动。 XAPPER在重复率最高10 Hz的重复率下产生高剂量的低能量X射线。正在进行X射线损伤的研究。提供了设施能力,结果迄今为止和未来计划的概述。

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