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MAGNETIC CONFINEMENT OF AN EXPANDING LASER-PRODUCED PLASMA

机译:扩展的激光产生等离子体的磁约束

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High energy ions from IFE target explosions threaten the survival and lifetime of dry chamber walls. Magnetic fields have been proposed as a possible means to divert or extract energy from the expanding plasma. We have performed experimental studies to characterize the expansion dynamics of laser ablation plumes into several magnetic field configurations, including fields aligned with or transverse to the expansion direction, and a curved field with the axis aligned with the expansion direction. Plasma was produced using pulses from a Q-switched Nd:YAG laser supplying power density in the range of 5-50 GW/cm~2. Significant changes were observed in the plume dynamics, including enhanced emission, confinement of the plasma, and guiding of the expansion along field lines.
机译:来自IFE目标爆炸的高能离子威胁着干燥室壁的生存和寿命。已经提出了磁场作为从膨胀的等离子体转移或提取能量的可能手段。我们已经进行了实验研究,以将激光烧蚀羽流的扩展动力学表征为几种磁场结构,包括与扩展方向对齐或垂直于扩展方向的场,以及与轴与扩展方向对齐的弯曲场。使用来自Q开关Nd:YAG激光器的脉冲产生等离子体,其功率密度范围为5-50 GW / cm〜2。在羽流动力学中观察到了显着变化,包括增强的发射,等离子体的约束以及沿场线的扩展引导。

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