论文标题

关于太阳能共振线的旧问题的新灯

New light on an old problem of the cores of solar resonance lines

论文作者

Judge, Philip, Kleint, Lucia, Leenaarts, Jorrit, Sukhorukov, Andrii, Vial, Jean-Claude

论文摘要

与观测中看到的较小的逆转相反,我们重新检查了一个50多年的深层中央逆转问题。我们检查了H I,Mg II和Ca II的共振线的数据和计算,即在上染色体上形成的自我转移核。基于IRIS的3D模拟以及MG II线的数据,我们认为该分辨率不在微型或大扰动限制中的尺度上的速度字段。使用在上色球上形成的光学细线的观察结果排除了宏扰动,并表明它需要具有不合理的特殊特性来说明IRIS任务中MG II共振线的关键观察。因此,上染色体上的湍流的功率可能大大低于早期分析所推断出的。取而代之的是,在3D计算中,水平辐射转移产生更平滑的源函数,在波长和太空中平滑强度梯度。这些影响在更强的线上增加。我们的工作将对理解过渡区域的发作,可用于加热电晕的动作的能量以及用适用于共振线剖面的hanle效应来解释极化数据的能量。

We re-examine a 50+ year-old problem of deep central reversals predicted for strong solar spectral lines, in contrast to the smaller reversals seen in observations. We examine data and calculations for the resonance lines of H I, Mg II and Ca II, the self-reversed cores of which form in the upper chromosphere. Based on 3D simulations as well as data for the Mg II lines from IRIS, we argue that the resolution lies not in velocity fields on scales in either of the micro- or macro-turbulent limits. Macro-turbulence is ruled out using observations of optically thin lines formed in the upper chromosphere, and by showing that it would need to have unreasonably special properties to account for critical observations of the Mg II resonance lines from the IRIS mission. The power in turbulence in the upper chromosphere may therefore be substantially lower than earlier analyses have inferred. Instead, in 3D calculations horizontal radiative transfer produces smoother source functions, smoothing out intensity gradients in wavelength and in space. These effects increase in stronger lines. Our work will have consequences for understanding the onset of the transition region, the energy in motions available for heating the corona, and for the interpretation of polarization data in terms of the Hanle effect applied to resonance line profiles.

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