K-shell and recombination radiation of aluminum and neon z-pinches at long time implosion regime

A. Shishlov, R. Baksht, S. Chaikovsky, A. Fedunin, A. Labetsky, V. Oreshkin, A. Rousskikh, S. Shlykhtun, V. Kokshenev, N. Kurmaev, F. Fursov
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Abstract

Theoretical investigation shows that it may be advantageous to produce kilovolt x-ray radiation in Z-pinch plasma radiation sources using recombination radiation emitted from a lower atomic number plasma rather than K-shell radiation of higher atomic number elements. We carried out the experiments with aluminum and neon z-pinch plasma radiation sources on the GIT-12 generator (2.5 MA, 300 ns). All experiments were carried out in a long time implosion regime (/spl sim/300 ns). A shell- on-solid-fill double gas puff was used in the experiments with neon, and a gas-puff-on-wire-array load was employed in aluminum z-pinch experiments. Special attention was given to the measurements of K-shell and recombination radiation of neon and aluminum. The load parameters were varied to optimize radiation yield in kilovolt spectral range.
长时间内爆状态下铝和氖z缩紧的k壳和复合辐射
理论研究表明,利用低原子序数等离子体的复合辐射比利用高原子序数元素的k壳辐射更有利于在z箍缩等离子体辐射源中产生千伏特的x射线辐射。我们在GIT-12发生器(2.5 MA, 300 ns)上进行了铝和氖z捏缩等离子体辐射源的实验。所有实验均在长时间内爆状态(/spl sim/300 ns)下进行。氖气实验采用壳体-固体-填充双充气装置,铝z箍缩实验采用线阵充气装置。特别注意了氖和铝的k壳和复合辐射的测量。改变负载参数以优化千伏特光谱范围内的辐射产率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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