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Laser-ablation treatment of short-pulse laser targets: Toward an experimental program on energetic-ion interactions with dense plasmas

机译:短脉冲激光目标的激光烧蚀处理:建立有关高能离子与稠密等离子体相互作用的实验程序

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This new project relies on the capabilities collocated at Los Alamos in the Trident laser facility of long-pulse laser drive, for laser-plasma formation, and high-intensity short-pulse laser drive, for relativistic laser-matter interaction experiments. Specifically, we are working to understand quantitatively the physics that underlie the generation of laser-driven MeVucleon ion beams, in order to extend these capabilities over a range of ion species, to optimize beam generation, and to control those beams. Furthermore, we intend to study the interaction of these novel laser-driven ion beams with dense plasmas, which are relevant to important topics such as the fast-ignition method of inertial confinement fusion (ICF), weapons physics, and planetary physics. We are interested in irradiating metallic foils with the Trident short-pulse laser to generate medium to heavy ion beams (Z = 20-45) with high efficiency. At present, target-surface impurities seem to be the main obstacle to reliable and efficient acceleration of metallic ions in the foil substrate. In order to quantify the problem, measurements of surface impurities on typical metallic-foil laser targets were made. To eliminate these impurities, we resorted to novel target-treatment techniques such as Joule-heating and laser-ablation, using a long-pulse laser intensity of similar to 10(10) W/cm(2). Our progress on this promising effort is presented in this paper, along with a summary of the overall project.
机译:这个新项目依赖于Trident激光器设施中Los Los Alamos的能力,该机构具有长脉冲激光驱动器,用于等离子体形成,以及高强度短脉冲激光驱动器,用于相对论性激光物质相互作用实验。具体来说,我们正在努力从数量上理解产生激光驱动的MeV /核子离子束的物理基础,以便将这些功能扩展到各种离子种类上,以优化束的产生并控制这些束。此外,我们打算研究这些新型激光驱动离子束与致密等离子体的相互作用,这些相互作用与诸如惯性约束聚变(ICF)的快速点火方法,武器物理学和行星物理学等重要主题相关。我们感兴趣的是用Trident短脉冲激光辐照金属箔以产生高效率的中重离子束(Z = 20-45)。目前,目标表面的杂质似乎是箔基板中金属离子可靠,有效加速的主要障碍。为了量化问题,对典型金属箔激光靶上的表面杂质进行了测量。为了消除这些杂质,我们采用了类似于10(10)W / cm(2)的长脉冲激光强度,采用焦耳加热和激光烧蚀等新型靶材处理技术。本文介绍了我们在这一有希望的工作方面取得的进展以及整个项目的摘要。

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