Detailed Imaging of Coronal Rays with the Parker Solar Probe

Author:

Poirier NicolasORCID,Kouloumvakos Athanasios,Rouillard Alexis P.ORCID,Pinto Rui F.ORCID,Vourlidas AngelosORCID,Stenborg GuillermoORCID,Valette Emeline,Howard Russell A.ORCID,Hess PhillipORCID,Thernisien Arnaud,Rich Nathan,Griton LeaORCID,Indurain Mikel,Raouafi Nour-Edine,Lavarra MichaelORCID,Réville VictorORCID

Abstract

Abstract The Wide-field Imager for Solar PRobe (WISPR) obtained the first high-resolution images of coronal rays at heights below 15 R when the Parker Solar Probe (PSP) was located inside 0.25 au during the first encounter. We exploit these remarkable images to reveal the structure of coronal rays at scales that are not easily discernible in images taken from near 1 au. To analyze and interpret WISPR observations, which evolve rapidly both radially and longitudinally, we construct a latitude versus time map using the full WISPR data set from the first encounter. From the exploitation of this map and also from sequential WISPR images. we show the presence of multiple substructures inside streamers and pseudostreamers. WISPR unveils the fine-scale structure of the densest part of streamer rays that we identify as the solar origin of the heliospheric plasma sheet typically measured in situ in the solar wind. We exploit 3D magnetohydrodynamic models, and we construct synthetic white-light images to study the origin of the coronal structures observed by WISPR. Overall, including the effect of the spacecraft relative motion toward the individual coronal structures, we can interpret several observed features by WISPR. Moreover, we relate some coronal rays to folds in the heliospheric current sheet that are unresolved from 1 au. Other rays appear to form as a result of the inherently inhomogeneous distribution of open magnetic flux tubes.

Funder

ERC SLOW_SOURCE

Publisher

American Astronomical Society

Subject

Space and Planetary Science,Astronomy and Astrophysics

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