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

An indirect-drive non-cryogenic double-shell path to 1ω Nd-laser hybrid inertial fusion–fission energy

Peter Amendt, Jose Milovich, L. John Perkins, Harry Robey2010年被引用 18Nuclear FusionIF 3出版社

A high-yield, room temperature, double-shell target design using a Nd : glass laser driver at the fundamental frequency 1ω is developed for hybrid inertial fusion–fission energy generation (Moses et al 2009 Fusion Sci. Technol.56 547). The associated 4–10× fission energy gain relaxes the gain requirements of the fusion driver, enabling the prospect of a volume-ignition target with high thermonuclear burn fraction, simplified (1ω) laser operations from a quasi-impulsive power history, room temperature fielding, minimal shock-timing requirements and reduced risk of plasma-mediated laser backscatter with a vacuum hohlraum.

日本語訳

高出力、室温、二重シェルターゲット設計は、基本周波数1ωのNd:ガラスレーザードライバーを用いて、ハイブリッド慣性核融合・核分裂エネルギー生成(Moses et al 2009 Fusion Sci. Technol.56 547)のために開発された。関連する4〜10倍の核分裂エネルギー利得は、核融合ドライバーの利得要件を緩和し、高い熱核燃焼率を有する体積着火ターゲット、準衝撃的パワー履歴からの簡素化された(1ω)レーザー運用、室温でのフィールディング、最小限の衝撃波タイミング要件、および真空ホールラウムによるプラズマ媒介レーザー後方散乱のリスク低減の見通しを可能にする。

wiki

Inertial confinement fusion
この論文にはまだAI要約がありません。

関連論文

Diagnosing inertial confinement fusion ignition

2024Nuclear Fusion

Beam matter interaction physics for fast ignitors

1999Fusion Engineering and Design

The National Ignition Facility - applications for inertial fusion energy and high-energy-density science

1999Plasma Physics and Controlled Fusion

Present understanding of ignition and gain using indirect-drive inertial confinement fusion target designs on the U.S. National Ignition Facility

2025Plasma Physics and Controlled Fusion

Inertial fusion program in Japan and ignition experiment facility by laser

1989Fusion Engineering and Design

From laser fusion to laser accelerators: basic studies into high power laser plasmas

2009Plasma Physics and Controlled Fusion

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

1999Fusion Engineering and Design

Fusion technology aspects of laser inertial fusion energy (LIFE)

2014Fusion Engineering and Design

A prospectus on laser-driven inertial fusion as an energy source

2024Physics of Plasmas

Core size effects of laser fusion subcritical research reactor for fusion engineering research

2021Nuclear Fusion