On the Mesoscale Structure of CMEs at Mercury's Orbit: BepiColombo and Parker Solar Probe Observations
arXiv:2401.01875 · doi:10.3847/1538-4357/ad1ab4
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.
31 pages, 13 figures, 5 tables, accepted for publication in The Astrophysical Journal
References in corpus (42)
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- The Solar Orbiter mission -- Science overview
- The Solar Probe Cup on Parker Solar Probe
- Strong coronal channelling and interplanetary evolution of a solar storm up to Earth and Mars
- Progressive transformation of a flux rope to an ICME
- Investigating Mercury's Environment with the Two-Spacecraft BepiColombo Mission
- Global Trends of CME Deflections Based on CME and Solar Parameters
- CME-CME Interactions as Sources of CME Geo-effectiveness: The Formation of the Complex Ejecta and Intense Geomagnetic Storm in Early September 2017
- Observation-based modelling of magnetised Coronal Mass Ejections with EUHFORIA
- Self-Similarity of ICME Flux Ropes: Observations by Radially Aligned Spacecraft in the Inner Heliosphere
- Quantifying errors in 3D CME parameters derived from synthetic data using white-light reconstruction techniques
- Generic magnetic field intensity profiles of interplanetary coronal mass ejections at Mercury, Venus and Earth from superposed epoch analyses
- A New Class of Complex Ejecta Resulting from the Interaction of two CMEs and its Expected Geoeffectiveness
- Planar magnetic structures in coronal mass ejection-driven sheath regions
- Three-dimensional evolution of erupted flux ropes from the Sun (2-20 Rs) to 1 AU
- Multipoint interplanetary coronal mass ejections observed with Solar Orbiter, BepiColombo, Parker Solar Probe, Wind and STEREO-A
- Heliospheric Evolution of Magnetic Clouds
- Single-spacecraft techniques for shock parameters estimation: A systematic approach
- Orientations of LASCO Halo CMEs and Their Connection to the Flux Rope Structure of Interplanetary CMEs
- Inconsistencies Between Local and Global Measures of CME Radial Expansion as Revealed by Spacecraft Conjunctions
- First observations of irregular surface of interplanetary shocks at ion scales by Cluster
- 20 Years of ACE Data: How Superposed Epoch Analyses Reveal Generic Features in Interplanetary CME Profiles
- CMEs and SEPs During November-December 2020: A Challenge for Real-Time Space Weather Forecasting
- CME Evolution in the Structured Heliosphere and Effects at Earth and Mars During Solar Minimum
- Modelling a multi-spacecraft coronal mass ejection encounter with EUHFORIA
- Collection, Collation, and Comparison of 3D Coronal CME Reconstructions
- Multi-spacecraft observations of the structure of the sheath of an interplanetary coronal mass ejection and related energetic ion enhancement
- The effect of stream interaction regions on ICME structures observed in longitudinal conjunction
- Evidence of a complex structure within the 2013 August 19 coronal mass ejection. Radial and longitudinal evolution in the inner heliosphere
- A Coronal Mass Ejection and Magnetic Ejecta Observed In Situ by STEREO-A and Wind at 55 Angular Separation
- Coronal mass ejection deformation at 0.1 au observed by WISPR
- Direct First PSP Observation of the Interaction of Two Successive Interplanetary Coronal Mass Ejections in November 2020
- Exploring the radial evolution of Interplanetary Coronal Mass Ejections using EUHFORIA
- Uncovering Erosion Effects on Magnetic Flux Rope Twist
- Rotation and interaction of the September 8 and 10, 2014 CMEs tested with EUHFORIA
- Magnetic reconnection as a mechanism to produce multiple protonpopulations and beams locally in the solar wind
- Statistical Analysis of Interplanetary Shocks from Mercury to Jupiter
- Modeling a Coronal Mass Ejection from an Extended Filament Channel. II. Interplanetary Propagation to 1 au
- On the utility of flux rope models for CME magnetic structure below 30
- Evolution of the Radial Size and Expansion of Coronal Mass Ejections Investigated by Combining Remote and In-Situ Observations
- Sequential Small Coronal Mass Ejections Observed In~situ and in White-Light Images by Parker Solar Probe
- New Observations Needed to Advance Our Understanding of Coronal Mass Ejections
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- The solar cycle 25 multi-spacecraft solar energetic particle event catalog of the SERPENTINE project
- On the reason for the widespread energetic storm particle event of 13 March 2023
- A coronal mass ejection encountered by four spacecraft within 1 au from the Sun: Ensemble modelling of propagation and magnetic structure
- Synthetic Remote-sensing and In-situ Observations of Fine-scale Structure in a Pseudostreamer Coronal Mass Ejection through the Solar Corona
- Polarimeter to Unify the Corona and Heliosphere (PUNCH)
- Transfer of Entropy between the Magnetic Field and Solar Energetic Particles during an Interplanetary Coronal Mass Ejection
- Intermittency in Interplanetary Coronal Mass Ejections Observed by Parker Solar Probe and Solar Orbiter
- High-Energy Insights from an Escaping Coronal Mass Ejection with Solar Orbiter/STIX Observations
- Magnetic interaction analysis of multiple interplanetary coronal mass ejections leading to a historic geomagnetic storm in May 2024
- Parker Solar Probe observations of solar energetic particle (SEP) events with inverse velocity arrival (IVA) features