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Non-LTE and gradient effects in K-shell oxygen emission laser-produced plasma

机译:K壳氧气发射激光产生的等离子体中的非LTE和梯度效应

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A recent effort [1] to develop a high-resolution spectroscopy capability for He-like and H-like ions to study far wing shapes from a laser-produced plasma experiment at the Lawrence Livermore National Laboratory found unexpected structure in the observed emission from a Mylar target. In this paper we propose that the observed features are due to exotic inner-shell transitions in mid-ionized oxygen, suggesting that the observed emission arises from two plasma regions: a hotter, less dense outer region gives rise to the observed He-like and H-like resonance lines, while a cooler, more dense plasma region closer to the target surface and in a region surrounding the laser spot generates the dielectronic satellites and the exotic inner-shell lines. Calculations using the Los Alamos suite of atomic physics codes and the plasma kinetics code ATOMIC are used to support this assertion.
机译:劳伦斯·利弗莫尔国家实验室(Lawrence Livermore National Laboratory)的激光等离子体实验研究了一种新的研究成果,旨在开发高分辨率的光谱学能力,用于研究类He和类H离子的高分辨光谱,以研究远翼形状。聚酯薄膜目标。在本文中,我们提出观察到的特征是由于中电离氧中奇异的内壳转变所致,这表明观察到的发射来自两个等离子体区域:较热,密度较小的外部区域产生了观察到的He-like和H型共振线,同时更冷,更密集的等离子体区域更靠近目标表面,并且在激光点周围的区域中,会产生双电子卫星和奇异的内壳线。使用Los Alamos原子物理学代码套件和等离子动力学代码ATOMIC进行的计算可支持这种说法。

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