首页> 美国政府科技报告 >Current Scaling of Optimum K-Shell X-Ray Yield and Load Mass Applied to Argon Gas-Puff Z-Pinches.
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Current Scaling of Optimum K-Shell X-Ray Yield and Load Mass Applied to Argon Gas-Puff Z-Pinches.

机译:最佳K-shell X射线​​产量和负载质量的电流定标应用于氩气抽气Z形夹。

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A simple two-level radiation-scaling model has previously been shown to agree with 0.7-MA neon gas-puff and 7-MA aluminum wire-array experiments. Here, the scalings of optimum load mass and peak K-shell yield with current for argon gas puffs are compared with data over an order-of-magnitude current variation. Optimum load conditions are determined by maximizing K-shell yield subject to fixed implosion energy, resulting in peak yield and optimum mass as functions of implosion energy and stagnation radius. The scalings with current result from implosion-energy and implosion-time relations that fit Double Eagle nested-shell argon gas-puff results. Both the maximum-yield and optimum-mass scalings provide good absolute-value fits to the data, including the variation with implosion time.

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