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Review of laser produced multi-keV X-ray sources from metallic foils, cylinders with liner, and low density aerogels

机译:回顾金属箔,带衬里的圆柱体和低密度气凝胶的激光产生的多keV X射线源

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Experimental results obtained within the last fifteen years on multi-keV X-ray sources irradiated with nanosecond scale pulse duration 3 omega laser light at TW power levels by CEA and collaborators are discussed in this review paper. Experiments were carried out on OMEGA and GEKKO XII laser facilities where emitting materials in the 5-10 keV multi-keV energy range are intermediate Z value metals from titanium to germanium. Results focused on conversion efficiency improvement by a factor of 2 when an underdense plasma is created using a laser pre-pulse on a metallic foil, which is then heated by a second laser pulse delayed in time. Metal coated inner surface walls of plastic cylindrical tube ablated by laser beam impacts showed that plasma confinement doubles X-ray emission duration as it gives adequate plasma conditions (electron temperature and density) over a long period of time. Low-density aerogels (doped with metal atoms uniformly distributed throughout their volume or metal oxides) contained in a plastic cylinder have been developed and their results are comparable to gas targets. A hybrid target concept consisting of a thin metal foil placed at the end of a cylinder filled with low density aerogel has emerged as it could collect benefits from pre-exploded thin foils, efficient laser absorption in aerogel, and confinement by cylinder walls. All target geometry performances are relatively close together at a given photon energy and mainly depend on laser irradiation condition optimizations. Results are compared with gas target performances from recent NIF experiments allowing high electron temperatures over large dimension low density plasmas, which are the principal parameters for efficient multi-keV Xray production. Published by AIP Publishing.
机译:在这篇论文中,我们讨论了在过去的15年中,CEA和合作者用TW功率水平的纳秒级脉冲持续时间3Ω激光对纳秒级脉冲持续时间的多keV X射线源获得的实验结果。在OMEGA和GEKKO XII激光设备上进行了实验,其中5-10 keV多keV能量范围内的发射材料是从钛到锗的Z值中间金属。当在金属箔片上使用激光预脉冲产生欠浓等离子体时,结果集中于转换效率提高2倍,然后金属箔被时间延迟的第二个激光脉冲加热。塑料圆柱管的金属涂层内壁受到激光束的侵蚀,表明等离子体限制使X射线的发射时间延长了一倍,因为它在很长一段时间内提供了适当的等离子体条件(电子温度和密度)。已经开发了包含在塑料圆筒中的低密度气凝胶(掺有在整个体积内均匀分布的金属原子或金属氧化物),其结果与气体目标相当。已经出现了一种混合目标概念,该概念由放置在装有低密度气凝胶的圆柱体末端的薄金属箔组成,因为它可以从预先爆炸的薄箔,气凝胶中的有效激光吸收以及圆柱体壁的限制中受益。在给定的光子能量下,所有目标几何性能都相对接近,并且主要取决于激光照射条件的优化。将结果与最近的NIF实验的气体目标性能进行了比较,这些实验允许在大尺寸低密度等离子体上实现高电子温度,这是有效产生多keV X射线的主要参数。由AIP Publishing发布。

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