首页> 外文期刊>Laser and Particle Beams >Study of pure and mixed clustered noble gas puffs irradiated with a high intensity (7 x 10(19) W/cm(2)) sub-ps laser beam and achievement of a strong X-ray flash in a laser-generated debris-free X-ray source
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Study of pure and mixed clustered noble gas puffs irradiated with a high intensity (7 x 10(19) W/cm(2)) sub-ps laser beam and achievement of a strong X-ray flash in a laser-generated debris-free X-ray source

机译:用高强度(7×10(19)W / cm(2))亚PS激光束照射纯和混合聚类贵族气体粉扑,并在激光产生的碎片中实现强X射线闪光 X射线源

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We present a broad study of linear, clustered, noble gas puffs irradiated with the frequency doubled (527 nm) Titan laser at Lawrence Livermore National Laboratory. Pure Ar, Kr, and Xe clustered gas puffs, as well as two mixed-gas puffs consisting of KrAr and XeKrAr gases, make up the targets. Characterization experiments to determine gas-puff density show that varying the experimental parameter gas-delay timing (the delay between gas puff initialization and laser-gas-puff interaction) provides a simple control over the gas-puff density. X-ray emission (>1.4 keV) is studied as a function of gas composition, density, and delay timing. Xe gas puffs produce the strongest peak radiation in the several keV spectral region. The emitted radiation was found to be anisotropic, with smaller X-ray flux observed in the direction perpendicular to both laser beam propagation and polarization directions. The degree of anisotropy is independent of gas target type but increases with photon energy. X-ray spectroscopic measurements estimate plasma parameters and highlight their difference with previous studies. Electron beams with energy in excess of 72 keV are present in the noble gas-puff plasmas and results indicate that Ar plays a key role in their production. A drastic increase in harder X-ray emissions (X-ray flash effect) and multi-MeV electron-beam generation from Xe gas-puff plasma occurred when the laser beam was focused on the front edge of the linear gas puff.
机译:我们对劳伦斯利弗尔国家实验室劳伦斯利弗鲁尔国家实验室的频率加倍(527nm)泰坦激光器照射的线性,聚集,贵气泵的广泛研究。 Pure Ar,Kr和Xe集群燃气泡芙,以及由Krar和Xekrar气体组成的两个混合气体浮气,构成了目标。测定气泵密度的表征实验表明,改变实验参数气体延迟定时(气体泡芙初始化和激光 - 气泵相互作用之间的延迟)提供了对气泵密度的简单控制。作为气体成分,密度和延迟时序的函数研究了X射线发射(> 1.4 keV)。 XE气体浮气产生几种KEV光谱区域中的最强峰辐射。发现发射的辐射是各向异性的,在垂直于激光束传播和偏振方向上观察到较小的X射线通量。各向异性程度与气体目标类型无关,但随着光子能量的增加。 X射线光谱测量估计等离子体参数并突出与以前研究的差异。具有超过72keV的能量的电子束存在于惰性气泡等离子体中,结果表明AR在其生产中发挥着关键作用。当激光束聚焦在线性气体粉扑的前边缘时,发生较硬的X射线排放(X射线闪光效应)和多MEV电子束产生的较硬X射线排放(X射线闪光效应)和多MEV电子束产生。

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