Acceleration and Expansion of a Coronal Mass Ejection in the High Corona: Role of Magnetic Reconnection
arXiv:2206.02090 · doi:10.3847/1538-4357/ac75d4
Abstract
The important role played by magnetic reconnection in the early acceleration of coronal mass ejections (CMEs) has been widely discussed. However, as CMEs may have expansion speeds comparable to their propagation speeds in the corona, it is not clear whether and how reconnection contributes to the true acceleration and expansion separately. To address this question, we analyze the dynamics of a moderately fast CME on 2013 February 27, associated with a continuous acceleration of its front into the high corona, even though its speed had reached 700~km~s and larger than the solar wind speed. The apparent CME acceleration is found to be due to the CME expansion in the radial direction. The CME true acceleration, i.e., the acceleration of its center, is then estimated by taking into account the expected deceleration caused by the solar wind drag force acting on a fast CME. It is found that the true acceleration and the radial expansion have similar magnitudes. We find that magnetic reconnection occurs after the CME eruption and continues during the CME propagation in the high corona, which contributes to the CME dynamic evolution. Comparison between the apparent acceleration related to the expansion and the true acceleration that compensates the drag shows that, for this case, magnetic reconnection contributes almost equally to the CME expansion and to the CME acceleration. The consequences of these measurements for the evolution of CMEs as they transit from the corona to the heliosphere are discussed.
Accepted by ApJ
References in corpus (5)
- Observation-based modelling of magnetised Coronal Mass Ejections with EUHFORIA
- Inbound waves in the solar corona: a direct indicator of Alfvén Surface location
- Understanding the Role of Mass-Unloading in Filament Eruptions
- Importance of CME Radial Expansion on the Ability of Slow CMEs to Drive Shocks
- Solar Flare-CME Coupling Throughout Two Acceleration Phases of a Fast CME
Cited by in corpus (3)
- Evolution of the Radial Size and Expansion of Coronal Mass Ejections Investigated by Combining Remote and In-Situ Observations
- Overexpansion-dominated Coronal Mass Ejection Formation and Induced Radio Bursts
- A coronal mass ejection encountered by four spacecraft within 1 au from the Sun: Ensemble modelling of propagation and magnetic structure