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Joint US/Russian plasma formation experiments for magnetic compression/magnetized target fusion (MAGO/MTF)

机译:美国/俄罗斯的联合等离子体形成实验,用于磁压缩/磁化靶融合(MAGO / MTF)

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Magnetic compression/magnetized target fusion (MAGO/MTF) is an area of fusion research that is intermediate between magnetic fusion energy (MFE) and inertial confinement fusion (ICF) in time and density scales. In this paper, the authors report the results of experiments exploring a scheme for forming a hot, magnetized plasma possibly suited for subsequent implosion in a MAGO/MTF context. The experiment described here used a copper plasma formation chamber. The outer radius of the plasma volume was 10 cm. The chamber was initially filled with 10 Torr of 50% deuterium, 50% tritium gas seeded with 0.01% neon for diagnostic purposes. The chamber behavior was computationally modeled using two-dimensional magnetohydrodynamic techniques.
机译:磁压缩/磁化目标聚变(MAGO / MTF)是聚变研究的一个领域,在时间和密度尺度上介于磁聚变能量(MFE)和惯性约束聚变(ICF)之间。在本文中,作者报告了探索一种形成热的,磁化的等离子体的方案的实验结果,该等离子体可能适合在MAGO / MTF环境中进行内爆。这里描述的实验使用了铜等离子体形成室。血浆体积的外半径为10cm。为了诊断目的,首先将10托50%的氘,50%的with气体和0.01%的氖填充到反应室中。腔室的行为是使用二维磁流体力学技术进行计算建模的。

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