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Complex atom physics and radiative properties of hot dense plasmas

O. Peyrusse2004年被引用 15Nuclear FusionIF 3出版社

The understanding of ICF plasmas requires specific quantities such as average ionizations, emissivities and opacities, both for hydro-simulations and diagnostics. These quantities clearly involve the internal state of the ions. The well-known traditional few-electron atomic physics provides such satisfactory quantities for LTE and NLTE plasmas. On the other hand, calculations for high-Z plasmas containing open-shell complex ionic emitters have been attempted only recently. Because of the very large density of states in such ions, these calculations are based upon statistical considerations about the energy levels and the collisional-radiative rates rather than individual level or process accounting. Complex many-electron excited levels may have purely statistical, i.e. thermally induced, properties or intrinsic statistical properties due to the mixing of a large number of electron configurations. We review these statistical properties and we sum up the advances in complex atom physics which improve our capabilities to model radiative properties of hot dense plasmas.

日本語訳

ICFプラズマの理解には、流体シミュレーションと診断の両方に対して、平均電離度、放射率、不透明度などの特定の量が必要である。これらの量は明らかにイオンの内部状態に関係している。よく知られた従来の少数電子原子物理は、LTEおよび非LTEプラズマに対してそのような満足のいく量を提供する。一方、開殻複合発光体を含む高Zプラズマに対する計算は、ごく最近になって試みられたばかりである。そのようなイオンにおける状態密度が非常に高いため、これらの計算は、個々の準位や過程の計上ではなく、エネルギー準位と衝突-放射過程率に関する統計的考察に基づいている。複合多電子励起準位は、多数の電子配置の混合による純粋に統計的な、すなわち熱的に誘起された性質を持つ場合もあれば、固有の統計的性質を持つ場合もある。我々はこれらの統計的性質を概説し、高温高密度プラズマの放射特性をモデル化する能力を向上させる複合原子物理における進歩を総括する。

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