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首页> 外文期刊>The Astrophysical journal >MULTILINE SPECTROPOLARIMETRY OF THE QUIET SUN AT 5250 AND 6302 A
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MULTILINE SPECTROPOLARIMETRY OF THE QUIET SUN AT 5250 AND 6302 A

机译:5250和6302 A处的安静太阳多线光谱仪

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The reliability of quiet-Sun magnetic field diagnostics based on the Fe I lines at 6302 A has been questioned by recent work. Here we present the results of a thorough study of high-resolution multiline observations taken with the new spectropolarimeter SPINOR, comprising the 5250 and 6302 A spectral domains. The observations were analyzed using several inversion algorithms, including Milne-Eddington, LTE with 1 and 2 components, and MISMA codes. We find that the line-ratio technique applied to the 5250 A lines is not sufficiently reliable to provide a direct magnetic diagnostic in the presence of thermal fluctuations and variable line broadening. In general, one needs to resort to inversion algorithms, ideally with realistic magnetohydrodynamic constrains. When this is done, the 5250 A lines do not seem to provide any significant advantage over those at 6302 A. In fact, our results point toward a better performance with the latter (in the presence of turbulent line broadening). In any case, for very weak flux concentrations, neither spectral region alone provides sufficient constraints to fully disentangle the intrinsic field strengths. Instead, we advocate for a combined analysis of both spectral ranges, which yields a better determination of the quiet-Sun magnetic properties. Finally, we propose the use of two other Fe I lines (at 4122 and 9000 A) with identical line opacities that seem to work much better than the others.
机译:最近的工作对基于Fe I线(6302 A)的安静太阳磁场诊断的可靠性提出了质疑。在这里,我们介绍了对使用5250和6302 A光谱域的新型分光计SPINOR进行的高分辨率多线观测结果进行的全面研究的结果。使用几种反演算法对观测值进行了分析,包括Milne-Eddington,具有1和2分量的LTE以及MISMA码。我们发现,应用于5250 A线路的线路比率技术不够可靠,无法在存在热波动和线路变宽的情况下提供直接磁诊断。通常,人们需要诉诸于反演算法,理想情况下是具有现实的磁流体动力学约束。完成此操作后,似乎5250 A管线没有比6302 A管线提供任何明显的优势。实际上,我们的结果表明后者具有更好的性能(在湍流管线展宽的情况下)。无论如何,对于非常弱的通量浓度,任何一个光谱区域都无法单独提供足够的约束条件来完全消除本征场强。相反,我们主张对两个光谱范围进行组合分析,从而更好地确定静太阳磁性能。最后,我们建议使用其他两根Fe I线(在4122和9000 A下),它们的线混浊度似乎比其他的要好得多。

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