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Outflow Velocity Structure in the Upper Transition Region and Corona

机译:上过渡区和电晕的出流速度结构

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摘要

Outflow velocity maps in the quiet Sun and coronal hole regions have been observed with the EUV Imaging Spectrometer on Hinode over a range of coronal and transition region temperatures, in order to correlate the solar wind with effects due to the underlying supergranule network and to coronal holes. The cell structure has been identified using data from the Solar Dynamics Observatory: specifically, 1600 Å images from the Advanced Imaging Assembly instrument and dopplergrams from the Helioseismic and Magnetic Imager. We find that the expansion of the velocity field with height through the upper transition region and the corona follows the same general pattern that has been long established for the emitted intensities. The outflow velocity field expands laterally with height with the magnetic funnels, eventually filling the space between the cell boundaries. Moreover, the detailed structure of the outflow morphology, combined with the decrease of velocity dispersion with increasing temperature, supports the concept of local stochastic energy release at lower heights. This is consistent with a reconnection process between emerging fields within the cell and the funnels at the cell boundaries.
机译:使用日光浴上的EUV成像光谱仪在一定范围的日冕和过渡区域温度范围内观察了安静的太阳和日冕孔区域中的流出速度图,以便将太阳风与潜在的超颗粒网络和日冕孔的影响相关联。电池结构已使用太阳动力学天文台的数据进行了识别:具体而言,来自Advanced Imaging Assembly仪器的1600Å图像和来自Helioseismic and Magnetic Imager的多普勒图。我们发现,通过上部过渡区域和电晕,速度场随高度的扩展遵循与发射强度强度长期建立的相同的一般模式。流出速度场通过磁漏斗随高度横向扩展,最终填充了细胞边界之间的空间。此外,流出形态的详细结构,再加上温度升高引起的速度弥散的减小,支持了在较低高度局部释放随机能量的概念。这与单元内新兴场与单元边界处的漏斗之间的重新连接过程一致。

著录项

  • 来源
    《Solar Physics》 |2012年第2期|p.435-443|共9页
  • 作者

    Alan Gabriel; Lucia Abbo;

  • 作者单位

    Institut d’Astrophyisique Spatiale, Université Paris Sud-11, 91405, Orsay Cedex, France;

    INAF—Osservatorio Astronomico di Torino, Pino Torinese, 10025, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Corona; Solar wind; Supergranule network;

    机译:日冕;太阳风;超颗粒网络;
  • 入库时间 2022-08-18 00:02:38

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