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1 Hz fast-heating fusion driver HAMA pumped by a 10 J green diode-pumped solid-state laser

Y. Mori, T. Sekine, O. Komeda, S. Nakayama, K. Ishii, R. Hanayama, K. Fujita, S. Okihara, N. Satoh, T. Kurita2013年被引用 20Nuclear FusionIF 3出版社

A Ti : sapphire laser HAMA pumped by a diode-pumped solid-state laser (DPSSL) is developed to enable a high-repetitive inertial confinement fusion (ICF) experiment to be conducted. To demonstrate a counter-irradiation fast-heating fusion scheme, a 3.8 J, 0.4 ns amplified chirped pulse is divided into four beams: two counter-irradiate a target with intensities of 6 × 1013 W cm−2, and the remaining two are pulse-compressed to 110 fs for heating the imploded target with intensities of 2 × 1017 W cm−2. HAMA contributed to the first demonstration by showing that a 10 J class DPSSL is adaptable to ICF experiments and succeeded in DD neutron generation in the repetition mode. Based on HAMA, we can design and develop an integrated repetitive ICF experiment machine by including target injection and tracking.

日本語訳

高繰り返し慣性核融合(ICF)実験を可能にするため、ダイオード励起固体レーザー(DPSSL)で励起されるTi:サファイアレーザーHAMAを開発した。対向照射高速加熱核融合スキームを実証するため、3.8J、0.4nsの増幅チャープパルスを4ビームに分割し、2ビームは6×10¹³W cm⁻²の強度でターゲットに対向照射し、残りの2ビームは110fsにパルス圧縮して2×10¹⁷W cm⁻²の強度で爆縮ターゲットを加熱する。HAMAは、10J級DPSSLがICF実験に適用可能であることを示し、繰り返しモードでのDD中性子発生に成功することで、初の実証に貢献した。HAMAに基づき、ターゲット入射と追跡を組み込むことで、統合型の繰り返しICF実験装置を設計・開発することができる。

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