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Study of the radiation temperature on ablator by using the shock wave technique

Liling Li, Guoli Ren, Huan Zhang, Longfei Jing, Xiaoshi Peng, Yaohua Chen, Xin Hu, Lu Zhang, Jin Li, Zhiwen Yang2022年Plasma Physics and Controlled FusionIF 2.2出版社

A new diagnostic platform for more accurate diagnosis of the peak radiation temperature on ablator has been proposed. A nearly constant radiation temperature was obtained by two laser entrance holes spherical hohlraum. The peak radiation temperature on ablator was determined by the shock wave technique. A high-quality burn-through image of a two-step-shaped Au ablator was obtained in the experiment. The simulated mass ablation rate agrees well with the experimental result, while the peak radiation temperature measured by flat-response x-ray detectors outside the hohlraum was of ∼20 eV's lower than that obtained by the shock wave technique. This deviation results in ∼20%'s decrease in the mass ablation rate in the simulation. Thus, the new diagnostic platform can provide more accurate peak radiation temperature diagnosis. This can greatly support the inertial confinement fusion ignition target design.

日本語訳

高精度なアブレータ上のピーク放射温度診断のための新しい診断プラットフォームが提案された。2つのレーザー入射孔を有する球状ホーラムにより、ほぼ一定の放射温度が得られた。衝撃波法により、アブレータ上のピーク放射温度が決定された。実験において、2段階形状の金アブレータの高品質な焼き抜け画像が取得された。シミュレーションによる質量アブレーション率は実験結果とよく一致したが、ホーラム外部の平板型X線検出器で測定されたピーク放射温度は、衝撃波法で得られた値よりも約20 eV低かった。この偏差により、シミュレーションにおける質量アブレーション率は約20%減少した。したがって、この新しい診断プラットフォームは、より正確なピーク放射温度診断を提供することができ、慣性閉じ込め核融合点火ターゲット設計を大きく支援することができる。

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