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温暖且超致密等离子体混合物中的种间辐射跃迁。

Interspecies radiative transition in warm and superdense plasma mixtures.

作者信息

Hu S X, Karasiev V V, Recoules V, Nilson P M, Brouwer N, Torrent M

机构信息

Laboratory for Laser Energetics, University of Rochester, 250 East River Road, Rochester, NY, 14623-1299, USA.

CEA, DAM, DIF, 91297, Arpajon, France.

出版信息

Nat Commun. 2020 Apr 24;11(1):1989. doi: 10.1038/s41467-020-15916-3.

Abstract

Superdense plasmas widely exist in planetary interiors and astrophysical objects such as brown-dwarf cores and white dwarfs. How atoms behave under such extreme-density conditions is not yet well understood, even in single-species plasmas. Here, we apply thermal density functional theory to investigate the radiation spectra of superdense iron-zinc plasma mixtures at mass densities of ρ = 250 to 2000 g cm and temperatures of kT = 50 to 100 eV, accessible by double-shell-target implosions. Our ab initio calculations reveal two extreme atomic-physics phenomena-firstly, an interspecies radiative transition; and, secondly, the breaking down of the dipole-selection rule for radiative transitions in isolated atoms. Our first-principles calculations predict that for superdense plasma mixtures, both interatomic radiative transitions and dipole-forbidden transitions can become comparable to the normal intra-atomic Kα-emission signal. These physics phenomena were not previously considered in detail for extreme high-density plasma mixtures at super-high energy densities.

摘要

超致密等离子体广泛存在于行星内部以及诸如褐矮星核心和白矮星等天体物理对象中。即使在单物种等离子体中,原子在如此极端密度条件下的行为仍未得到很好的理解。在此,我们应用热密度泛函理论来研究质量密度ρ = 250至2000 g/cm³且温度kT = 50至100 eV的超致密铁 - 锌等离子体混合物的辐射光谱,这种条件可通过双壳靶内爆实现。我们的从头计算揭示了两种极端的原子物理现象——首先,是种间辐射跃迁;其次,是孤立原子中辐射跃迁的偶极选择定则的失效。我们的第一性原理计算预测,对于超致密等离子体混合物,原子间辐射跃迁和偶极禁戒跃迁都可能变得与正常的原子内Kα发射信号相当。对于超高能量密度下的极端高密度等离子体混合物,这些物理现象以前并未被详细考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43b5/7181684/2b2070828eb0/41467_2020_15916_Fig1_HTML.jpg

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