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Sunspot Plumes and Flow Channels

机译:黑子羽和流道

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It is well known that sunspots are dark. This statement is not correct in the sunspot atmosphere between the chromosphere and the corona, where sunspots often are brighter than their surroundings. The brightest feature in the sunspot transition region is called a sunspot plume. Not all sunspots contain a plume. We find that 20 out of 21 sunspots show a plume when one magnetic polarity dominates the sunspot region out to a distance of 50 ′′ from the sunspot. Most sunspots show downflows that exceed 25 km s−1 in the sunspot plumes at temperatures close to 250 000 K. This downflow is not maintained by inflow from the corona, but by gas at transition region temperatures, streaming in flow channels from locations well outside the sunspot. We suggest that this inflow is a necessary requirement for the sunspot plume to occur and present a working hypothesis for the origin of sunspot plumes. This paper is the first thorough spectral analysis of sunspot plumes. It is based on simultaneous observations of ten or six EUV emission lines in 42 sunspot regions with the Coronal Diagnostic Spectrometer – CDS on the Solar and Heliospheric Observatory – SOHO. The line profiles are studied in detail with another SOHO instrument, the Solar Ultraviolet Measurements of Emitted Radiation – SUMER.
机译:众所周知,黑子很黑。在色球层和日冕之间的黑子大气中,这种说法是不正确的,因为那里的黑子通常比周围环境亮。黑子过渡区中最亮的特征称为黑子羽。并非所有的黑子都包含羽状物。我们发现,当一种磁性在黑子区域中占主导地位且距黑子的距离为50′′时,21个黑子中有20个显示出羽毛。大多数太阳黑子在接近250000 K的温度下,在黑子羽流中的下流超过25 km s-1 。这种下流不是由电晕的流入所保持,而是由处于过渡区温度的气体在流道中流动而维持。来自黑子以外的位置。我们建议这种流入是黑斑羽流发生的必要条件,并提出了黑斑羽流起源的有效假设。本文是对黑子烟羽的首次彻底光谱分析。它基于在太阳和日球天文台– SOHO上使用日冕诊断光谱仪– CDS对42个太阳黑子区域同时观测到十个或六个EUV发射线。使用另一种SOHO仪器,即SUMER,对太阳紫外线辐射的辐射测量进行了详细的研究。

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  • 来源
    《Solar Physics 》 |2001年第1期| 89-131| 共43页
  • 作者单位

    Institute of Theoretical Astrophysics, University of Oslo,Oslo, Norway;

    Institute of Theoretical Astrophysics, University of Oslo,Oslo, Norway;

    Institute of Theoretical Astrophysics, University of Oslo,Oslo, Norway;

    Institute of Theoretical Astrophysics, University of Oslo,Oslo, Norway;

    Max-Planck-Institut für Aeronomie,D-37191 Katlenburg-Lindau, Germany;

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