2D and 3D Polar Plume Analysis from the Three Vantage Positions of STEREO/EUVI A, B, and SOHO/EIT
arXiv:1111.4123 · doi:10.1007/s11207-011-9902-7
Abstract
Polar plumes are seen as elongated objects starting at the solar polar regions. Here, we analyze these objects from a sequence of images taken simultaneously by the three spacecraft telescopes STEREO/EUVI A and B, and SOHO/EIT. We establish a method capable of automatically identifying plumes in solar EUV images close to the limb at 1.01 - 1.39 R in order to study their temporal evolution. This plume-identification method is based on a multiscale Hough-wavelet analysis. Then two methods to determined their 3D localization and structure are discussed: First, tomography using the filtered back-projection and including the differential rotation of the Sun and, secondly, conventional stereoscopic triangulation. We show that tomography and stereoscopy are complementary to study polar plumes. We also show that this systematic 2D identification and the proposed methods of 3D reconstruction are well suited, on one hand, to identify plumes individually and on the other hand, to analyze the distribution of plumes and inter-plume regions. Finally, the results are discussed focusing on the plume position with their cross-section area.
22 pages, 10 figures, Solar Physics article
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Cited by in corpus (8)
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- 3D electron density distributions in the solar corona during solar minima: assessment for more realistic solar wind modeling
- Polar plumes' orientation and the Sun's global magnetic field
- The Application of the Filtered Backprojection Algorithm to Solar Rotational Tomography
- Stereoscopic Measurements of Coronal Doppler Velocities
- Population of Bright Plume Threads in Solar Polar Coronal Holes
- Solar coronal plumes and the fast solar wind