论文标题

蒙布拉丝的光谱极化分析

Spectro-Polarimetric Analysis of an Umbral Filament

论文作者

Guglielmino, S. L., Romano, P., Cobo, B. Ruiz, Zuccarello, F., Murabito, M.

论文摘要

太阳光球的高分辨率观察结果最近揭示了黑子遮阳伞内部存在细长的丝状明亮结构。这些特征被称为翁布拉尔丝(UFS),其形态,进化和磁性构型与通常观察到在黑子中侵入的轻桥的形态,进化和磁构型不同。 为了研究在活性区NOAA 12529的领先黑子中观察到的UF,我们分析了HINODE卫星上的光谱极(SP)在光球中进行的光谱极化观测值。用虹膜望远镜和SDO/HMI和SDO/AIA获得的虹膜望远镜和观测值进行的高分辨率观测值已被用来补充光谱极化分析。 从Hinode/SP测量值的反转获得的结果使我们能够丢弃UFS是一种轻桥的假设。实际上,我们发现没有与观察到的UF相互占地的无田或低场强度区域。相比之下,我们在结构中检测到表明存在强水平场(大于2500 g)的Stokes曲线。此外,UF的很大一部分相对于宿主UMBRA具有相反的极性。在上层大气层中,我们观察到光球中的UF的丝是丝状的。我们将这些发现解释为表明UF可能是悬挂在黑子上方的通量绳的光球表现,这会通过磁传输触发Umbra内半月形细丝的形成。

High-resolution observations of the solar photosphere have recently revealed the presence of elongated filamentary bright structures inside sunspot umbrae. These features, which have been called umbral filaments (UFs), differ in morphology, evolution, and magnetic configuration from light bridges that are usually observed to intrude in sunspots. To study an UF observed in the leading sunspot of active region NOAA 12529, we have analyzed spectro-polarimetric observations taken in the photosphere with the spectropolarimeter (SP) aboard the Hinode satellite. High-resolution observations in the upper chromosphere and transition region taken with the IRIS telescope and observations acquired by SDO/HMI and SDO/AIA have been used to complement the spectro-polarimetric analysis. The results obtained from the inversion of the Hinode/SP measurements allow us to discard the hypothesis that UFs are a kind of light bridge. In fact, we find no field-free or low-field strength region cospatial to the observed UF. In contrast, we detect in the structure Stokes profiles that indicate the presence of strong horizontal fields, larger than 2500 G. Furthermore, a significant portion of the UF has opposite polarity with respect to the hosting umbra. In the upper atmospheric layers, we observe filaments being cospatial to the UF in the photosphere. We interpret these findings as suggesting that the UF could be the photospheric manifestation of a flux rope hanging above the sunspot, which triggers the formation of penumbral-like filaments within the umbra via magneto-convection.

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