FusionPapers
図版検索AI要約wiki日本の研究装置ジャーナルChatGPTAbout
© 2026 FUSIONPAPERS
About法務情報
トップに戻る

Comparison between radiation-preheated and conventional shock-driven direct-drive targets for KrF lasers

D. Colombant, S. Obenschain, M. Klapisch2004年被引用 4Nuclear FusionIF 3出版社

A radiation-preheated direct-drive target is examined where the fuel isentrope is varied by changing the high-Z dopant concentration in the ablator. As usual, the growth of the Rayleigh–Taylor instability as determined by a one-dimensional stability analysis can be decreased when the isentrope increases. The target performance is found to be quite similar to previously designed targets where the ablator and fuel isentropes were increased via an initial shock. However, the gain decreases slightly more because some of the laser input energy is carried away as radiation and does not contribute to the kinetic motion of the target on its way inward. This design adds to the options available for high-gain targets that are stable enough against hydrodynamic instability.

この論文にはまだAI要約がありません。

関連論文

Suppression of the Rayleigh–Taylor instability and its implication for the impact ignition

2004Plasma Physics and Controlled Fusion

Ablative stabilization of short wavelength Rayleigh-Taylor instability

1996Nuclear Fusion

Novel approach to TNSA enhancement using multi-layered targets—a numerical study

2023Plasma Physics and Controlled Fusion

Overview of new high gain target design for a laser fusion power plant

2002Fusion Engineering and Design

Compression phase study of the HiPER baseline target

2008Plasma Physics and Controlled Fusion

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

2004Nuclear Fusion

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

2019Plasma Physics and Controlled Fusion

Studies on the robustness of shock-ignited laser fusion targets

2011Plasma Physics and Controlled Fusion

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

2007Plasma Physics and Controlled Fusion

Inertial confinement fusion:The quest for ignition and energy gain using indirect drive

1999Nuclear Fusion