Magnetic Topology of quiet-Sun Ellerman bombs and associated Ultraviolet brightenings
arXiv:2412.03211 · doi:10.1051/0004-6361/202452822
Abstract
Quiet-Sun Ellerman bombs (QSEBs) are small-scale magnetic reconnection events in the lower atmosphere of the quiet Sun. Recent work has shown that a small percentage of them can occur co-spatially and co-temporally to ultraviolet (UV) brightenings in the transition region. We aim to understand how the magnetic topologies associated with closely occurring QSEBs and UV brightenings can facilitate energy transport and connect these events. We used high-resolution H-beta observations from the Swedish 1-m Solar Telescope (SST) and detected QSEBs using k-means clustering. We obtained the magnetic field topology from potential field extrapolations using spectro-polarimetric data in the photospheric Fe I 6173 A line. To detect UV brightenings, we used coordinated and co-aligned data from the Interface Region Imaging Spectrograph (IRIS) and imposed a threshold of 5 sigma above the median background on the (IRIS) 1400 A slit-jaw image channel. We identify four distinct magnetic configurations that associate QSEBs with UV brightenings, including a simple dipole configuration and more complex fan-spine topologies with a three-dimensional (3D) magnetic null point. In the fan-spine topology, the UV brightenings occur near the 3D null point, while QSEBs can be found close to the footpoints of the outer spine, the inner spine, and the fan surface. We find that the height of the 3D null varies between 0.2 Mm to 2.6 Mm, depending on the magnetic field strength in the region. We note that some QSEBs and UV brightenings, though occurring close to each other, are not topologically connected with the same reconnection process. We find that the energy released during QSEBs falls in the range of 10^23 to 10^24 ergs. This study shows that magnetic connectivity and topological features, like 3D null points, are crucial in linking QSEBs in the lower atmosphere with UV brightenings in the transition region.
14 pages, 13 figures, Accepted for publication in A&A
References in corpus (21)
- CRISP Spectropolarimetric Imaging of Penumbral Fine Structure
- Hot Explosions in the Cool Atmosphere of the Sun
- CRISPRED: A data pipeline for the CRISP imaging spectropolarimeter
- Extension of the MURaM radiative MHD code for coronal simulations
- Intermittent reconnection and plasmoids in UV bursts in the low solar atmosphere
- Ellerman bombs and UV bursts: transient events in chromospheric current sheets
- The Number Of Magnetic Null Points In The Quiet Sun Corona
- Surges and Si IV bursts in the solar atmosphere. Understanding IRIS and SST observations through RMHD experiments
- Small-Scale Structuring Of Ellerman Bombs at Solar Limb
- Compact solar UV burst triggered in a magnetic field with a fan-spine topology
- Explosive events in active region observed by IRIS and SST/CRISP
- Ellerman bombs and UV bursts: reconnection at different atmospheric layers
- IRIS Burst Spectra Co-Spatial To A Quiet-Sun Ellerman-Like Brightening
- The magnetic drivers of campfires seen by the Polarimetric and Helioseismic Imager (PHI) on Solar Orbiter
- Various Local Heating Events in the Earliest Phase of Flux Emergence
- Flame-like Ellerman Bombs and Their Connection to Solar UV Bursts
- Observational Evidence of Magnetic Reconnection for Brightenings and Transition Region Arcades in IRIS observations
- Signatures of ubiquitous magnetic reconnection in the lower solar atmosphere
- A 2D Model for Coronal Bright Points: Association with Spicules, UV bursts, Surges and EUV Coronal Jets
- Observation of a 3D magnetic null point
- Transition region response to Quiet Sun Ellerman Bombs
Cited by in corpus (3)
- Small-scale dynamic phenomena associated with interacting fan-spine topologies: quiet-Sun Ellerman bombs, UV brightenings, and chromospheric inverted-Y-shaped jets
- Resolving Interchange Reconnection Dynamics in a Fan-Spine-like Topology Observed by Solar Orbiter
- Automatic detection of Ellerman bombs in the H line