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RECENT DEVELOPMENTS IN THE FIELD OF ATOMIC PHYSICS IN HOT DENSE PLASMAS

机译:热密等离子体中的原子物理学领域的最新进展

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摘要

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.
机译:对ICF等离子体的理解需要特定的数量,例如平均电离,发射率和不透明度,以便进行水模拟和诊断。这些量显然涉及离子的内部状态。众所周知的传统少数电子原子物理学为LTE和NLTE等离子体提供了令人满意的数量。另一方面,仅在最近才尝试计算含开壳络合离子发射体的高Z等离子体。由于此类离子中的状态密度非常大,因此这些计算是基于关于能级和碰撞辐射率的统计考虑,而不是基于单个的能级或过程核算。由于大量电子构型的混合,复杂的多电子激发能级可能具有纯粹的统计性质,即热诱导性质或固有统计性质。我们回顾了这些统计特性,并总结了复杂原子物理学的进步,这些进步提高了我们对热密集等离子体的辐射特性建模的能力。

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