论文标题

黑子色球中的光谱波动

Spectropolarimetric Fluctuations in a Sunspot Chromosphere

论文作者

Stangalini, M., Baker, D., Valori, G., Jess, D. B., Jafarzadeh, S., Murabito, M., To, A. S. H., Brooks, D. H., Ermolli, I., Giorgi, F., MacBride, C. D.

论文摘要

在这个新时代,具有无与伦比的光谱准确性和灵敏度的4米类太阳能望远镜的工具进步将使能够以前所未有的细节研究色球磁场及其动力学。在这方面,光谱诊断可以提供对磁流动力(MHD)波过程的宝贵见解。最近,MHD波,尤其是与特定波模式相关的Alfvénic波动,不仅被认为是重要机制,这不仅是对太阳大气的外层加热和太阳风的加速度的加热,而且还因为在太阳和其他类似太阳的恒星中所众所周知的元素丰度(也被称为第一型恒星)(也可能是型号的潜在效果)(也是元素的效果;在这里,我们利用了最新的和独特的光谱ibis观测值,以研究在黑子色球层中强度与圆极化(CP)波动之间的关系。我们的结果表明,在斑块中的强度和CP波动之间存在明确的联系,这对应于狭窄的磁场倾斜范围。这表明在黑子中存在alfvénic扰动。

The instrumental advances made in this new era of 4-meter class solar telescopes with unmatched spectropolarimetric accuracy and sensitivity, will enable the study of chromospheric magnetic fields and their dynamics with unprecedented detail. In this regard, spectropolarimetric diagnostics can provide invaluable insight into magneto-hydrodynamic (MHD) wave processes. MHD waves and, in particular, Alfvénic fluctuations associated to particular wave modes, were recently recognized as important mechanisms not only for the heating of the outer layers of the Sun's atmosphere and the acceleration of the solar wind, but also for the elemental abundance anomaly observed in the corona of the Sun and other Sun-like stars (also known as first ionisation potential; FIP) effect. Here, we take advantage of state-of-the-art and unique spectropolarimetric IBIS observations to investigate the relation between intensity and circular polarisation (CP) fluctuations in a sunspot chromosphere. Our results show a clear link between the intensity and CP fluctuations in a patch which corresponds to a narrow range of magnetic field inclinations. This suggests the presence of Alfvénic perturbations in the sunspot.

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