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Anomalous effects on hot-electron transport and ablation structure

T. Yabe, K. Mima, K. Yoshikawa, H. Takabe, M. Hamano1981年被引用 55Nuclear FusionIF 3出版社

Two features of the ablation structure in the presence of hot electrons are clarified by simulation and theoretical analysis. One feature is the possibility of steady deflagration wave being formed by collisional energy deposition of hot electrons in the high-density region of laser targets, the other one is the creation of a steep density profile near the critical point, associated with hot-electron trapping and coldelectron heating due to a high electric field enhanced by anomalous resistivity to the return current. It should be noted that, in this anomalous region, a significant fraction of hot-electron energy is transferred to thermal electrons above 5 × 1015W·cm−2. A theoretical analysis is given which qualitatively agrees well with the simulation results. Possible applications of the theory to recent experiments are proposed.

日本語訳

高温電子の存在下でのアブレーション構造の2つの特徴が、シミュレーションと理論解析によって明らかにされた。1つは、レーザーターゲットの高密度領域における高温電子の衝突性エネルギー付与によって定常デフラグレーション波が形成される可能性であり、もう1つは、臨界点近傍での急峻な密度プロファイルの生成であり、これは、リターン電流に対する異常抵抗による高電場に伴う高温電子の捕捉と低温電子の加熱に関連している。この異常領域では、高温電子エネルギーのかなりの割合が、5×10¹⁵W·cm⁻²以上の条件下で低温電子に伝達されることに留意すべきである。理論解析が提示され、その結果はシミュレーション結果と定性的によく一致している。この理論の最近の実験への応用可能性が提案されている。

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AblationElectron transport
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