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High-gain direct-drive inertial confinement fusion for the Laser Mégajoule: recent progress

B Canaud, F Garaude, P Ballereau, J L Bourgade, C Clique, D Dureau, M Houry, S Jaouen, H Jourdren, N Lecler2007年Plasma Physics and Controlled FusionIF 2.2出版社

Recent progress in high-gain direct-drive inertial confinement fusion with the laser Mégajoule is reviewed. A new baseline direct-drive target design is presented which implodes with a two-cones irradiation pattern of indirect-drive beam configuration and zooming. Perturbation amplitudes and correlated growth rates of hydrodynamic instabilities in the compressed core of a directly driven inertial confinement fusion capsule are analyzed in planar and spherical geometries, with and without heat conduction, in the unsteady state regime of the deceleration. Shock propagation in heterogeneous media is addressed in the context of first shock. The neutron and photon emissions of high-gain direct-drive target are characterized. Numerical interpretations of directly driven homothetic cryogenic D2 target implosion experiments on the Omega facility are presented.

日本語訳

高利得直接駆動慣性核融合における最近の進展を、レーザー・メガジュールを用いて概説する。間接駆動ビーム配置とズーミングの二円錐照射方式で爆縮する、新しいベースライン直接駆動ターゲット設計を提示する。直接駆動慣性核融合キャプセルの圧縮コアにおける流体力学的不安定性の摂動振幅と相関成長率を、平面および球面幾何学において、熱伝導の有無を含め、非定常状態の減速過程で解析する。不均質媒質中の衝撃波伝播を、第一衝撃の文脈で扱う。高利得直接駆動ターゲットの中性子および光子放出特性を特徴付ける。オメガ施設における直接駆動同型低温D₂ターゲット爆縮の数値解釈を示す。

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Inertial confinement fusion
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