Evidence of external reconnection between an erupting mini-filament and ambient loops observed by Solar Orbiter/EUI
arXiv:2303.16046 · doi:10.1051/0004-6361/202245814
Abstract
Mini-filament eruptions are one of the most common small-scale transients in the solar atmosphere. However, their eruption mechanisms are still not understood thoroughly. Here, with a combination of 174 A images of high spatio-temporal resolution taken by the Extreme Ultraviolet Imager on board Solar Orbiter and images of the Atmospheric Imaging Assembly on board Solar Dynamics Observatory, we investigate in detail an erupting mini-filament over a weak magnetic field region on 2022 March 4. Two bright ribbons clearly appeared underneath the erupting mini-filament as it quickly ascended, and subsequently, some dark materials blew out when the erupting mini-filament interacted with the outer ambient loops, thus forming a blowout jet characterized by a widening spire. At the same time, multiple small bright blobs of 1-2 Mm appeared at the interaction region and propagated along the post-eruption loops toward the footpoints of the erupting fluxes at a speed of ~ 100 km/s. They also caused a semi-circular brightening structure. Based on these features, we suggest that the mini-filament eruption first experiences internal and then external reconnection, the latter of which mainly transfers mass and magnetic flux of the erupting mini-filament to the ambient corona.
8 pages, 6 figures, accepted for publication in Astronomy & Astrophysics
References in corpus (20)
- The Solar Orbiter mission -- Science overview
- Solar Coronal Jets: Observations, Theory, and Modeling
- Small-scale filament eruptions as the driver of solar coronal hole X-ray jets
- Observation of An Evolving Magnetic Flux Rope Prior To and During A Solar Eruption
- A Breakout Model for Solar Coronal Jets with Filaments
- Magnetic Flux Cancellation as the Trigger of Solar Quiet-Region Coronal Jets
- Kinematics and Fine Structure of An Unwinding Polar Jet Observed by SDO/AIA
- Initiation and Early Kinematic Evolution of Solar Eruptions
- Transient small-scale brightenings in the quiet solar corona: a model for campfires observed with Solar Orbiter
- Blobs in recurring EUV jets
- Quiet Sun mini-CMEs activated by supergranular flows
- Solar coronal heating from small-scale magnetic braids
- A Magnetic Reconnection model for Hot Explosions in the Cool Atmosphere of the Sun
- First Perihelion of EUI on the Solar Orbiter mission
- Another Look at Erupting Minifilaments at the Base of Solar X-Ray Polar Coronal "Standard" and "Blowout" Jets
- Annihilation of Magnetic Islands at the Top of Solar Flare Loops
- Genesis and Coronal-jet-generating Eruption of a Solar Minifilament Captured by IRIS Slit-raster Spectra
- Multi-stage reconnection powering a solar coronal jet
- Further Evidence for the Minifilament-Eruption Scenario for Solar Polar Coronal Jets
- Three-dimensional Magnetic and Thermodynamic Structures of Solar Microflares
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- Data-constrained 3D MHD Simulation of a Spiral Jet Caused by an Unstable Flux Rope Embedded in Fan-spine Configuration