FusionPapers
図版検索トレンドwiki日本の研究
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

High-gain direct-drive laser fusion with indirect drive beam layout of Laser Mégajoule

B. Canaud, F. Garaude, C. Clique, N Lecler, A. Masson, R. Quach, J. Van der Vliet2007年被引用 37Nuclear FusionIF 3出版社

A new solution for high-gain direct-drive fusion with the indirect drive beam irradiation of the Laser Mégajoule is presented here. This solution uses 2 rings per hemisphere at polar angles of 49° and 59.5°. The 2D calculations with the hydrodynamics code FCI2 lead to a thermonuclear energy of 32 MJ with less than 1 MJ incident laser energy.

日本語訳

ここでは、レーザー・メガジュールの間接駆動ビーム照射を用いた高利得直接駆動核融合のための新しい解法を提示する。この解法は、極角49°および59.5°において、半球あたり2リングを使用する。流体力学コードFCI2による2次元計算は、1MJ未満の入射レーザーエネルギーで32MJの熱核エネルギーをもたらす。

wiki

Laser fusion
この論文にはまだAI要約がありません。

関連論文

Optimization of laser–target coupling efficiency for direct drive laser fusion

2005Nuclear Fusion

First indirect drive inertial confinement fusion campaign at Laser Megajoule

2023Physics of Plasmas

Inertial confinement fusion experiments with OMEGA-A 30-kJ, 60-beam UV laser

1999Fusion Engineering and Design

High-gain direct-drive target design for laser fusion

2000Physics of Plasmas

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

2007Plasma Physics and Controlled Fusion

Effects of radiation on direct-drive laser fusion targets

2000Physics of Plasmas

High-gain direct-drive target design for the Laser Mégajoule

2004Nuclear Fusion

Compression and burning of a direct-driven thermonuclear target under the conditions of inhomogeneous heating by a multi-beam megajoule laser

2019Plasma Physics and Controlled Fusion

Laser–plasma interactions in direct-drive ignition plasmas

2012Plasma Physics and Controlled Fusion

The role of symmetry in indirect‐drive laser fusion

1995Physics of Plasmas