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Physics issues for shock ignition

D. Batani, S. Baton, A. Casner, S. Depierreux, M. Hohenberger, O. Klimo, M. Koenig, C. Labaune, X. Ribeyre, C. Rousseaux2014年被引用 104Nuclear FusionIF 3出版社

The paper presents theoretical analysis and experimental results concerning the major physical issues in the shock-ignition approach. These are the following: generation of a high amplitude shock in the imploding target, laser–plasma interaction physics under the conditions of high laser intensities needed for high amplitude shock excitation, symmetry and stability of the shock propagation, role of fast electrons in the symmetrization of the shock pressure and the fuel preheat. The theoretical models and numerical simulations are compared with the results of specially designed experiments on laser plasma interaction and shock excitation in plane and spherical geometries.

日本語訳

本論文は、衝撃波点火方式における主要な物理的課題に関する理論的解析と実験結果を提示する。それらの課題とは、爆縮ターゲットにおける高振幅衝撃波の生成、高振幅衝撃波励起に必要な高レーザー強度条件下でのレーザー・プラズマ相互作用物理、衝撃波伝播の対称性と安定性、衝撃波圧力の対称化における高速電子の役割、および燃料の予加熱である。理論モデルと数値シミュレーションは、平面形状および球面形状におけるレーザー・プラズマ相互作用と衝撃波励起に関して特別に設計された実験結果と比較される。

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