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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >K-shell spectroscopy of an independently diagnosed uniaxially expanding laser-produced aluminum plasma - art. no. 026410
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K-shell spectroscopy of an independently diagnosed uniaxially expanding laser-produced aluminum plasma - art. no. 026410

机译:独立诊断的单轴扩展激光产生的铝等离子体的K壳光谱-技术没有。 026410

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We present detailed spectroscopic analysis of the primary K-shell emission lines from a uniaxially expanding laser-produced hydrogenic and heliumlike aluminum plasma. The spectroscopic measurements are found to be consistent with time-dependent hydrodynamic properties of the plasma, measured using Thomson scattering and shadowgraphy. The K-shell population kinetics code FLY with the measured hydrodynamic parameters is used to generate spectra that are compared to the experimental spectra. Excellent agreement is found between the measured and calculated spectra for a variety of experimental target widths employed to produce plasmas with different optical depths. The peak emission from the hydrogenic Lyman series is determined to be from a temporal and spatial region where the hydrodynamic parameters are essentially constant. This allows a single steady-state solution of FLY to be used to deduce the electron temperature and density, from the measured line ratios and linewidths, for comparison with the Thomson and shadowgraphy data. These measurements are found to agree well with time-dependent calculations, and provide further validation for the FLY calculations of the ionization and excitation balance for a K-shell aluminum plasma. We also discuss the possible application of this data as a benchmark for hydrodynamic simulations and ionization/excitation balance calculations. [References: 38]
机译:我们目前的主要K壳发射线的详细光谱分析来自单轴扩展的激光产生的氢和类氦铝等离子体。发现光谱测量与使用汤姆森散射和阴影照相法测量的等离子体随时间变化的流体动力学特性一致。具有测得的流体动力学参数的K壳种群动力学代码FLY用于生成与实验光谱进行比较的光谱。在用于产生具有不同光学深度的等离子体的各种实验目标宽度的测量光谱和计算光谱之间发现了极好的一致性。确定来自氢的莱曼级数的峰值排放是从时间和空间区域确定的,其中流体动力学参数基本上是恒定的。这允许使用FLY的单个稳态解决方案,从测得的线宽比和线宽推导出电子温度和密度,以与Thomson和影线照相数据进行比较。发现这些测量值与时间相关的计算非常吻合,并为K壳铝等离子体的电离和激发平衡的FLY计算提供了进一步的验证。我们还将讨论该数据的可能应用,以作为流体动力学模拟和电离/激发平衡计算的基准。 [参考:38]

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