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Time-gated measurements of electron beam generated Kα emission lines from brass planar wire array implosions

机译:黄铜平面线阵列内爆产生电子束产生的Kα发射线的时间门控测量

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The relative amount of Kα radiation emitted by partially ionized copper and zinc from planar wire arrays on the 1 MA Zebra generator at the University of Nevada, Reno, does not correspond to the composition (70% copper, 30% zinc) of the array's brass wires. For example, the copper Kα line at 8 keV was observed to be much stronger than would be expected from zinc's Kα radiation at 8.6 keV, but this ratio also reversed, more emission from zinc than from copper, during the X-ray pulse. An excess of Kα photons from copper is consistent with a beam of electrons with energies above copper's K-edge but below that of zinc, but the opposite case is perplexing. Preferential ablation of Zn over Cu early in the current pulse could be a contributing factor, but opacity effects are not. Synthetic spectra for brass computed by a non-LTE collisional-radiative model that includes an electron beam component compare well with observed K-shell spectra, and suggest the parent ions of the Kα emission. These ionization stages are consistent with L-shell spectra. This comparison also indicates that the total energy in the electron beam increases towards the end of the radiation pulse while the electron temperature decreases. The crucial diagnostic in this measurement is a time-resolved X-ray spectrometer based on a LiF crystal.
机译:内华达大学里诺分校的1 MA Zebra发生器上的平面线阵列上的部分电离的铜和锌发出的Kα辐射的相对量与阵列黄铜的成分(70%铜,30%锌)不对应电线。例如,观察到8 keV的铜Kα线比锌在8.6 keV的Kα辐射所预期的强得多,但是在X射线脉冲期间,该比率也相反,锌的发射量比铜的发射多。铜中过量的Kα光子与一束能量高于铜的K边但低于锌的电子束一致,但相反的情况令人困惑。在电流脉冲的早期,Zn优先于Cu的烧蚀可能是一个促成因素,但不透明性不是。由包含电子束成分的非LTE碰撞辐射模型计算出的黄铜合成光谱与观察到的K壳光谱有很好的比较,并暗示了Kα发射的母离子。这些电离阶段与L壳光谱一致。该比较还表明,电子束中的总能量在辐射脉冲结束时增加,而电子温度降低。该测量中的关键诊断是基于LiF晶体的时间分辨X射线光谱仪。

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