根据 STEREO/COR2 对小尺度瞬变的多视角观测推断外冕中的太阳风速度

S. Lyu, Yuming Wang, Xiaolei Li, Quanhao Zhang, Jiajia Liu
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摘要

基于 STEREO 双子航天器的日光层成像仪-1 图像,我们建立了 CORrelation-Aided Reconstruction(CORAR)技术,用于定位和重建行星际空间中太阳风瞬变的三维结构。在此,我们将 CORAR 方法扩展到 STEREO 上的 COR2 图像,研究 2010 年 1 月至 5 月外冕小尺度瞬态的演变。通过与自相似膨胀模型的结果进行比较,我们证实瞬变可以很好地被定位和重建。重建瞬态的速度分布总体上显示了慢太阳风的典型特征。我们进一步研究了太阳上瞬态的来源,发现大多数重建的瞬态位于流带或日光层流片的顶部附近,并且可以沿着日冕模型推断的场线追溯到闭场和开场区域的边界。还讨论了慢太阳风中这些瞬变的形成机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inferring the Solar Wind Velocity in the Outer Corona Based on Multiview Observations of Small-scale Transients by STEREO/COR2
Based on the Heliospheric Imager-1 images of the STEREO twin spacecraft, we established the CORrelation-Aided Reconstruction (CORAR) technique to locate and reconstruct the 3D structures of solar wind transients in interplanetary space. Here, we extend the CORAR method to images of COR2 on board STEREO to study the evolution of small-scale transients in the outer corona from 2010 January to May. We confirm that the transients can be located and reconstructed well by comparing the results with those of a self-similar expanding model. The speed distribution of the reconstructed transients generally shows the typical characteristics of the slow solar wind. We further study the sources of the transients on the Sun, and find that most reconstructed transients are located near the top of streamer belts or the heliospheric current sheet and can be tracked back to the boundaries of the closed-field and open-field regions along the field lines extrapolated by corona models. The formation mechanisms of these transients in the slow solar wind are also discussed.
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