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A distributed radiator, heavy ion target driven by Gaussian beams in a multibeam illumination geometry

机译:高斯光束驱动的分布式辐射器重离子靶,在多光束照明几何中

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摘要

An inertial confinement fusion target driven by ion beams in a multibeam illumination geometry is presented. Two dimensional integrated LASNEX calculations (ion beam deposition to fusion burn in one computer simulation) predict a gain of greater than 65 for this target. Each beam has a Gaussian density profile and is focused to an elliptically shaped spot. Multiple beam ellipses are overlayed to form an annulus on the end of the cylindrical hohlraum. The beams enter at angles relative to the cylindrical axis of the hohlraum that are consistent with both liquid wall chamber protection and the space required for a final focusing system upstream. For an accelerator that is 25% efficient (η = 0.25), a gain G of 65 leads to ηG greater than 16; a reactor with a reasonably small recirculating power fraction requires ηG greater than 8--10.
机译:提出了由离子束驱动的多束照明几何惯性约束聚变目标。二维综合LASNEX计算(在一台计算机模拟中,离子束沉积到聚变燃烧)预测该目标的增益大于65。每个光束都有一个高斯密度分布,并聚焦到一个椭圆形的光斑上。多个光束椭圆叠加在圆柱孔的一端,形成一个环形空间。光束相对于大气压缸的圆柱轴以一定角度进入,该角度与液壁腔室保护和上游最终聚焦系统所需的空间都一致。对于效率为25%(η= 0.25)的加速器,增益G为65导致ηG大于16;循环功率分数相当小的反应堆需要的ηG大于8--10。

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