On the Mesoscale Structure of CMEs at Mercury's Orbit: BepiColombo and Parker Solar Probe Observations
Abstract
On 2022 February 15, an impressive filament eruption was observed off the solar eastern limb from three remote-sensing viewpoints, namely Earth, STEREO-A, and Solar Orbiter. In addition to representing the most-distant observed filament at extreme ultraviolet wavelengths -- captured by Solar Orbiter's field of view extending to above 6 -- this event was also associated with the release of a fast (2200 kms) coronal mass ejection (CME) that was directed towards BepiColombo and Parker Solar Probe. These two probes were separated by 2 in latitude, 4 in longitude, and 0.03 au in radial distance around the time of the CME-driven shock arrival in situ. The relative proximity of the two probes to each other and to the Sun (0.35 au) allows us to study the mesoscale structure of CMEs at Mercury's orbit for the first time. We analyse similarities and differences in the main CME-related structures measured at the two locations, namely the interplanetary shock, the sheath region, and the magnetic ejecta. We find that, despite the separation between the two spacecraft being well within the typical uncertainties associated with determination of CME geometric parameters from remote-sensing observations, the two sets of in-situ measurements display some profound differences that make understanding of the overall 3D CME structure particularly challenging. Finally, we discuss our findings within the context of space weather at Mercury's distances and in terms of the need to investigate solar transients via spacecraft constellations with small separations, which has been gaining significant attention during recent years.
Keywords
Cite
@article{arxiv.2401.01875,
title = {On the Mesoscale Structure of CMEs at Mercury's Orbit: BepiColombo and Parker Solar Probe Observations},
author = {Erika Palmerio and Fernando Carcaboso and Leng Ying Khoo and Tarik M. Salman and Beatriz Sánchez-Cano and Benjamin J. Lynch and Yeimy J. Rivera and Sanchita Pal and Teresa Nieves-Chinchilla and Andreas J. Weiss and David Lario and Johannes Z. D. Mieth and Daniel Heyner and Michael L. Stevens and Orlando M. Romeo and Andrei N. Zhukov and Luciano Rodriguez and Christina O. Lee and Christina M. S. Cohen and Laura Rodríguez-García and Phyllis L. Whittlesey and Nina Dresing and Philipp Oleynik and Immanuel C. Jebaraj and David Fischer and Daniel Schmid and Ingo Richter and Hans-Ulrich Auster and Federico Fraschetti and Marilena Mierla},
journal= {arXiv preprint arXiv:2401.01875},
year = {2024}
}
Comments
31 pages, 13 figures, 5 tables, accepted for publication in The Astrophysical Journal