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Inhibition of crossed-beam energy transfer induced by expansion-velocity fluctuations

C Neuville, K Glize, P Loiseau, P-E Masson-Laborde, A Debayle, M Casanova, C Baccou, C Labaune, S Depierreux2018年Plasma Physics and Controlled FusionIF 2.2出版社

Crossed-beam energy transfer between three laser beams has been experimentally investigated in a flowing plasma. Time-evolution measurements of the amplification of a first beam by a second beam highlighted the inhibition of energy transfer by hydrodynamic modifications of the plasma in the crossing volume due to the propagation of a third beam. According to 3D simulations and an analytical model, it appears that the long-wavelength expansion-velocity fluctuations produced by the propagation of the third beam in the crossing volume are responsible for this mitigation of energy transfer. This effect could be a cause of the over-estimation of the amount of the transferred energy in indirect-drive inertial confinement fusion experiments. Besides, tuning such long-wavelength fluctuations could be a way to completely inhibit CBET at the laser entrance holes of hohlraums.

日本語訳

交差ビーム間のエネルギー輸送が、流動するプラズマ中で3つのレーザービームを用いて実験的に調査された。第1のビームの第2のビームによる増幅の時間発展測定により、第3のビームの伝播による交差領域内のプラズマの流体力学的変調が、エネルギー輸送を抑制することが明らかになった。3次元シミュレーションと解析モデルによれば、第3のビームの伝播によって交差領域内に生じる長波長の膨張速度変動が、このエネルギー輸送の抑制の原因であると考えられる。この効果は、間接駆動型慣性閉じ込め核融合実験におけるエネルギー輸送量の過大評価の一因となり得る。さらに、このような長波長の変動を調整することは、ホーラムのレーザー入射口における交差ビーム間エネルギー輸送を完全に抑制する方法となり得る。

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