首页> 外文期刊>The Astrophysical journal >THE EFFECT OF HIGH-LYING LEVELS ON ATOMIC MODELS RELEVANT TO SPECTROSCOPIC ANALYSES OF SOLAR EXTREME-ULTRAVIOLET SPECTRA
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THE EFFECT OF HIGH-LYING LEVELS ON ATOMIC MODELS RELEVANT TO SPECTROSCOPIC ANALYSES OF SOLAR EXTREME-ULTRAVIOLET SPECTRA

机译:高层对太阳能极端极紫外光谱的光谱分析的影响

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In this work we investigate the effect of including high-lying configurations in the collisional-radiative models used to calculate spectral line intensities recorded by the Solar Ultraviolet Measurement of Emitted Radiation (SUMER) spectrometer on board the SOHO satellite. Many of the emission lines observed by SUMER are attributed to transitions within the L and M electronic shells of ions isoelectronic to sequences from Li Ⅰ to Na Ⅰ. By using atomic data that are mostly generated by the Hebrew University Lawrence Livermore Atomic Code (HULLAC), we incorporate in the atomic models configurations from higher shells and systematically study their effect on the calculated line intensities in selected ions. The high-lying configurations alter the line intensities through radiative cascades and configuration interaction effects. We find that cascades can significantly enhance the line intensities of the considered ions by up to 60% at temperatures of the ion maximum fractional abundance. The enhancement due to cascades increases with increasing temperature and charge state. The configuration mixing effects can either enhance or reduce the line intensities. Generally, the mixing effect becomes less important for higher charge states.
机译:在这项工作中,我们研究了在SOHO卫星上用于计算光谱线强度的碰撞辐射模型中包括高位配置的影响,该光谱线强度由太阳紫外线发射光谱仪(SUMER)记录。 SUMER观察到的许多发射谱线都归因于离子的L和M电子壳内等电子向LiⅠ到NaⅠ序列的过渡。通过使用主要由希伯来大学劳伦斯·利弗莫尔原子密码(HULLAC)生成的原子数据,我们将高级壳中的原子构型并入原子模型中,并系统地研究了它们对所选离子中计算出的谱线强度的影响。高层配置通过辐射级联和配置相互作用效应来改变线强度。我们发现级联可以在离子最大分数丰度的温度下将考虑的离子的线强度显着提高多达60%。由于级联引起的增强随着温度和电荷状态的增加而增加。组态混合效果可以增强或降低线强度。通常,对于较高的电荷状态,混合效应变得不太重要。

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