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STATISTICAL EQUILIBRIUM OF COPPER IN THE SOLAR ATMOSPHERE

机译:太阳大气中铜的统计平衡

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Non-local thermodynamic equilibrium (NLTE) line formation for neutral copper in the one-dimensional solar atmospheres is presented for the atomic model, including 96 terms of Cu I and the ground state of Cu II. The accurate oscillator strengths for all the line transitions in model atom and photoionization cross sections were calculated using the R-matrix method in the Russell-Saunders coupling scheme. The main NLTE mechanism for Cu I is the ultraviolet overionization. We find that NLTE leads to systematically depleted total absorption in the Cu I lines and, accordingly, positive abundance corrections. Inelastic collisions with neutral hydrogen atoms produce minor effects on the statistical equilibrium of Cu I in the solar atmosphere. For the solar Cu I lines, the departures from LTE are found to be small, the mean NLTE abundance correction of ~0.01 dex. It was found that the six low-excitation lines, with excitation energy of the lower level E exc ≤ 1.64 eV, give a 0.14 dex lower mean solar abundance compared to that from the six E exc 3.7 eV lines, when applying experimental gf-values of Kock & Richter. Without the two strong resonance transitions, the solar mean NLTE abundance from 10 lines of Cu I is log ε☉(Cu) = 4.19 ± 0.10, which is consistent within the error bars with the meteoritic value 4.25 ± 0.05 of Lodders et al. The discrepancy between E exc = 1.39-1.64 eV and E exc 3.7 eV lines can be removed when the calculated gf-values are adopted and a mean solar abundance of log ε☉(Cu) = 4.24 ± 0.08 is derived.
机译:针对原子模型,提出了一维太阳大气中中性铜的非局部热力学平衡(NLTE)线形成,包括96个Cu I和Cu II的基态。使用Russell-Saunders耦合方案中的R-矩阵方法,可以计算模型原子和光电离截面中所有线跃迁的准确振荡器强度。 Cu I的主要NLTE机制是紫外线过度电离。我们发现NLTE导致Cu I线中系统吸收的总吸收减少,因此导致正丰度校正。与中性氢原子的非弹性碰撞对太阳大气中Cu I的统计平衡影响较小。对于太阳能Cu I线,发现与LTE的偏差很小,平均NLTE丰度校正为〜0.01 dex。研究发现,当应用实验gf-f时,与Eex> 3.7 eV的六条低激发线相比,Eex≤1.64 eV的较低激发能的六条低激发线的平均太阳丰度低0.14 dex。的价值。如果没有两个强共振跃迁,来自10条Cu I的太阳平均NLTE丰度为logε☉(Cu)= 4.19±0.10,这在误差条内与Lodders等人的气象值4.25±0.05一致。当采用计算出的gf值并得出logε☉(Cu)= 4.24±0.08的平均太阳丰度时,可以消除E exc = 1.39-1.64 eV和E exc> 3.7 eV线之间的差异。

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