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Implosion dynamics and K-shell x-ray generation in large diameter stainless steel wire array Z pinches with various nesting configurations

机译:具有不同嵌套结构的大直径不锈钢线阵列Z夹中的内爆动力学和K壳X射线生成

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摘要

Nested stainless steel wire array variations were investigated on the 20 MA Z machine [R. B. Spielman , Phys. Plasmas 5, 2105 (1998)]. In order to reach experimentally observed electron temperatures near 3.8 keV and excite the K shell, these similar to 6.7 keV photon energy x-ray sources must be of large initial diameter (45-80 mm) which poses a concern for magnetic Rayleigh-Taylor instability growth. We discuss the implosion dynamics in these large diameter wire arrays, including an analysis of the ablation phase indicating that the prefill material is snowplowed at large radius. Nested array configurations with various mass and radius ratios are compared for instability mitigation and K-shell scaling. Degradation of the K-shell x-ray power and yield was observed for shots that did not have simultaneous implosion of the outer and inner wire arrays. Shots that were designed per this constraint exhibited K-shell yield scaling consistent with the model of J. W. Thornhill [IEEE Trans. Plasma Sci. 34, 2377 (2006)] which had been benchmarked to single array results. This lends confidence to K-shell yield predictions using this model for future shots on the refurbished Z machine. Initial results employing a triple nested wire array to stabilize the large diameter implosion are also reported.
机译:在20 MA Z机器上研究了嵌套的不锈钢线阵列的变化[R. B. Spielman,物理学。 Plasmas 5,2105(1998)]。为了达到实验观察到的电子温度接近3.8 keV并激发K壳,这些类似于6.7 keV的光子能量x射线源必须具有较大的初始直径(45-80 mm),这引起了磁瑞利泰勒不稳定性增长。我们讨论了这些大直径线阵列中的内爆动力学,包括对烧蚀阶段的分析,该分析表明预填充材料在大半径处被扫雪。比较了具有不同质量和半径比的嵌套阵列配置,以减轻不稳定和减小K壳缩放。对于没有同时爆破内外金属丝阵列的镜头,观察到其K壳X射线能力和良率下降。根据此约束条件设计的镜头显示出与J.W. Thornhill [IEEE Trans。等离子科学34,2377(2006)]的基准已用于单阵列结果。这使使用该模型的K-shell产量预测充满信心,以便将来在翻新的Z机上使用。还报告了使用三层嵌套导线阵列稳定大直径内爆的初步结果。

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