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Measurement of the $sim$0.1- to $>$ 10-keV Energy Distribution for an Argon Z-Pinch at the 15-MA Level

机译:15MA水平下氩Z型夹的$ sim $ 0.1-至$> $ 10-keV能量分布的测量

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We report an approximate energy distribution (coarse spectrum) over the range ~0.1 to > 10 keV for the X-ray output of an argon Z-pinch. The tests, conducted at ~15-MA peak current, utilized an 8-cm diameter double-shell nozzle. Sze (2001) have previously described the performance of this Z-pinch with emphasis on the K-shell line emission at ~3 keV. Additional measurements that address the non-K-line output of the Z-pinches are presented here. On the one hand, > 4-keV photons due to the free-bound continuum constitute a significant fraction, almost 30%, of the nominal K-shell emission. On the other hand, the sub-3-keV L-shell lines and continuum show distinctive time histories and significant yields. These nonresonance-line emissions are important for a more complete understanding of the implosion physics, for proper analysis of diagnostic responses, and for their effects upon objects exposed to the Z-pinch's radiation
机译:我们报告了氩Z夹的X射线输出在〜0.1到> 10 keV范围内的近似能量分布(粗谱)。在〜15-MA峰值电流下进行的测试使用了直径为8厘米的双壳喷嘴。 Sze(2001)先前描述了这种Z捏的性能,重点是在〜3 keV时的K壳线发射。这里介绍了解决Z引脚非K线输出的其他测量。一方面,由于自由束缚连续体而产生的> 4-keV光子占标称K壳发射的很大一部分,几乎占30%。另一方面,sub-3-keV L壳线和连续体显示出独特的时间历史和显着的产量。这些非共振线辐射对于更全面地了解内爆物理,正确分析诊断响应以及它们对暴露于Z捏合辐射的物体的影响非常重要。

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