Pre-eruption processes: heating, particle acceleration and the formation of a hot channel before the 2012 October 20 M9.0 limb flare
arXiv:1902.08436 · doi:10.3847/1538-4357/ab09ed
Abstract
We report a detailed study of the pre-eruption activities that led to the occurrence of an M9.0 flare/CME event on 2012 October 20 in NOAA AR 11598. This includes the study of the preceding confined C2.4 flare that occurred on the same AR ~25 minutes earlier. We observed that the M9.0 flare occurred as a consequence of two distinct triggering events well separated in time. The first triggering episode occurred as early as ~20 minutes before the onset of the M9.0 flare, evidenced by the destabilization and rise of a pre-existing filament to a new position of equilibrium at a higher coronal altitude during the decay phase of the C2.4 flare. This brought the system to a magnetic configuration where the establishment of the second triggering event was favorable. The second triggering episode occurred ~17 minutes later, during the early phase of the M9.0 flare, evidenced by the further rise of the filament and successful ejection. The second trigger is followed by a flare precursor phase, characterized by non-thermal emission and the sequential formation of a hot channel as shown by the SDO/AIA DEM (differential emission measure) maps, the RHESSI X-ray images and spectra. These observations are suggestive of magnetic reconnection and particle acceleration that can explain the precursor phase and can be directly related to the formation of the hot channel. We discuss on the triggering mechanisms, their implications during the early and precursor phases and highlight the importance of early activities and preceding small confined flares to understand the initiation of large eruptive flares.
14 pages, 7 figures, accepted for publication in ApJ
References in corpus (13)
- Observation of An Evolving Magnetic Flux Rope Prior To and During A Solar Eruption
- Thermal Diagnostics with the Atmospheric Imaging Assembly onboard the Solar Dynamics Observatory: A Validated Method for Differential Emission Measure Inversions
- Formation of a Double-decker Magnetic Flux Rope in the Sigmoidal Solar Active Region 11520
- Direct Observations of Tether-cutting Reconnection During a Major Solar Event From 2014 February 24 to 25
- Direct observations of magnetic flux rope formation during a solar coronal mass ejection
- Catastrophic eruption of magnetic flux rope in the corona and solar wind with and without magnetic reconnection
- Formation and eruption of a flux rope from the sigmoid active region NOAA 11719 and associated M6.5 flare: A multi-wavelength study
- Formation of Compound Flux Rope by The Merging of Two Filament Channels, Associated Dynamics and its Stability
- Large-scale contraction and subsequent disruption of coronal loops during various phases of the M6.2 flare associated with the confined flux rope eruption
- Multi-wavelength signatures of magnetic reconnection of a flare associated coronal mass ejection
- Generation mechanisms of quasi-parallel and quasi-circular flare ribbons in a confined flare
- Pre-flare coronal jet and evolutionary phases of a solar eruptive prominence associated with M1.8 flare: SDO and RHESSI observations
- Direct Observation of Two-Step Magnetic Reconnection in a Solar Flare
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