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Effect of fast electrons on the gain of a direct-drive laser fusion target

S Yu Guskov, P A Kuchugov, R A Yakhin, N V Zmitrenko2019年Plasma Physics and Controlled FusionIF 2.2出版社

The results of numerical and theoretical studies of the gain of a direct-drive inertial confinement fusion target, which includes a kinetic description of energy transfer by laser-accelerated fast electrons, are presented. The range of the initial temperature of the fast electrons and the fraction of laser energy contained in these particles were chosen based on the results of recent experiments at the National Ignition Facility. The effect of 'wandering' of fast electrons is taken into account which is due to the remoteness of the region of fast electron generation from the ablation surface of the imploded target. As a result a significant fraction of particles do not fall into the compressed part of target. The 'wandering' effect leads to a decrease in the negative effect of fast electron generation on the gain of the target.

日本語訳

直接駆動慣性核融合ターゲットの利得に関する数値的・理論的研究の結果を提示する。この研究には、レーザー加速された高速電子によるエネルギー輸送の運動論的記述が含まれる。高速電子の初期温度の範囲と、これらの粒子に含まれるレーザーエネルギーの割合は、国立点火施設における最近の実験結果に基づいて選択された。爆縮ターゲットのアブレーション面から高速電子が生成される領域が離れていることに起因する、高速電子の「彷徨」効果が考慮されている。その結果、圧縮されたターゲットの中心部に到達しない粒子の割合が有意となる。この「彷徨」効果により、高速電子の生成がターゲット利得に及ぼす負の影響が低減される。

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