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Thomson Parabola Spectrometer for Energetic Ions Emitted from Subns Laser Generated Plasmas

机译:汤姆森抛物线光谱仪用于从子激光产生的等离子体发射的高能离子

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摘要

Laser-generated plasmas were obtained in high vacuum by irradiating micrometric thin films (Au, Au/Mylar, Mylar) with the Asterix laser at the PALS Research Infrastructure in Prague. Irradiations at the fundamental wavelength, 300 ps pulse duration, at intensities up to about 1016W/cm2, enabled ions to be accelerated in forward direction with kinetic energies of the order of 2 MeV/charge state. Protons above 2 MeV were obtained in the direction orthogonal to the target surface in selffocusing conditions. Gold ions up to about 120 MeV and 60+ charge state were detected. Ion collectors and semiconductor SiC detectors were employed in time-of-flight arrangement in order to measure the ion velocities as a function of the angle around the normal direction to the target surface. A Thomson parabola spectrometer (TPS) with a multi-channel-plate detector was used to separate the different ion contributions to the charge emission in single laser shots, and to get information on the ion charge states, energy and proton acceleration. TPS experimental spectra were compared with accurate TOSCA simulations of TPS parabolas.
机译:在布拉格的PALS研究基础设施中,通过用Asterix激光照射微米级薄膜(Au,Au / Mylar,Mylar),在高真空下获得激光产生的等离子体。以300 ps脉冲持续时间的基本波长进行的辐照强度高达1016W / cm2,使离子能够以2 MeV /电荷态的动能在正向方向上加速。在自聚焦条件下,在垂直于目标表面的方向上获得2 MeV以上的质子。检测到高达约120 MeV和60+电荷状态的金离子。飞行时间安排中采用了离子收集器和半导体SiC检测器,以便测量离子速度与目标表面法线方向的夹角成函数关系。使用具有多通道板检测器的汤姆森抛物线光谱仪(TPS)来分离单次离子注入中不同的离子对电荷发射的贡献,并获得有关离子电荷状态,能量和质子加速度的信息。将TPS实验光谱与TPS抛物线的精确TOSCA模拟进行了比较。

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