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

Activities on target fabrication and injection toward laser fusion energy in Japan

T Norimatsu, K Nagai, T Yamanaka, T Endo, Y Sakagami2002年Fusion Engineering and DesignIF 1.7出版社

AbstractTarget-related activities to demonstrate ignition and burn were summarized. Fabrication of foam shells with a gas barrier by emulsion process, understanding of centering mechanism in the emulsion process, coating of organic photovoltaic cell to reduce initial imprint are described. Cooling-induced deformation (CID) of shells was studied and found to be important for thin shells. Results on magnetic levitation, injection and tracking that are necessary to provide targets to the firing position are mentioned.

日本語訳

点火および燃焼を実証するためのターゲット関連活動をまとめた。エマルション法によるガスバリアを有するフォームシェルの作製、エマルション法におけるセンタリング機構の理解、初期インプリント低減のための有機太陽電池コーティングについて述べる。シェルの冷却誘起変形(CID)を研究し、薄肉シェルにとって重要であることを見出した。ターゲットを発射位置に供給するために必要な磁気浮上、注入、追跡に関する結果について言及する。

wiki

Laser fusion
この論文にはまだAI要約がありません。

関連論文

Recent research on target fabrication for up-coming projects

1999Fusion Engineering and Design

Fusion energy with lasers, direct drive targets, and dry wall chambers

2003Nuclear Fusion

A new approach to foam-lined indirect-drive NIF ignition targets

2012Nuclear Fusion

Magnetically insulated and inertially confined fusion — MICF

1988Nuclear Fusion

Inertial confinement fusion and fast ignitor studies

2000Nuclear Fusion

FIREX foam cryogenic target development: residual void reduction and estimation with solid hydrogen refractive index measurements

2013Nuclear Fusion

Developing the basis for target injection and tracking in inertial fusion energy power plants

2002Fusion Engineering and Design

Study of high-Z-coated ignition target by detailed configuration accounting atomic physics for direct-drive inertial confinement fusion

2019Plasma Physics and Controlled Fusion

Issues in capsule fabrication and injection into a wet-walled IFE reactor

2001Fusion Engineering and Design

A spherical shell pellet injection system for repetitive laser engagement

2019Nuclear Fusion