Signatures of ubiquitous magnetic reconnection in the lower solar atmosphere
arXiv:2006.14975 · doi:10.1051/0004-6361/202038769
Abstract
Ellerman Bomb-like brightenings of the hydrogen Balmer line wings in the quiet Sun (QSEBs) are a signature of the fundamental process of magnetic reconnection at the smallest observable scale in the solar lower atmosphere. We analyze high spatial resolution observations (0.1 arcsec) obtained with the Swedish 1-m Solar Telescope to explore signatures of QSEBs in the H line. We find that QSEBs are ubiquitous and uniformly distributed throughout the quiet Sun, predominantly occurring in intergranular lanes. We find up to 120 QSEBs in the FOV for a single moment in time; this is more than an order of magnitude higher than the number of QSEBs found in earlier H observations. This suggests that about half a million QSEBs could be present in the lower solar atmosphere at any given time. The QSEB brightening found in the H line wings also persist in the line core with a temporal delay and spatial offset towards the nearest solar limb. Our results suggest that QSEBs emanate through magnetic reconnection along vertically extended current sheets in the solar lower atmosphere. The apparent omnipresence of small-scale magnetic reconnection may play an important role in the energy balance of the solar chromosphere.
Submitted to A&A letters
References in corpus (14)
- CRISP Spectropolarimetric Imaging of Penumbral Fine Structure
- Hot Explosions in the Cool Atmosphere of the Sun
- A solar surface dynamo
- CRISPRED: A data pipeline for the CRISP imaging spectropolarimeter
- Ellerman bombs and UV bursts: transient events in chromospheric current sheets
- Ellerman bombs and UV bursts: reconnection at different atmospheric layers
- IRIS Burst Spectra Co-Spatial To A Quiet-Sun Ellerman-Like Brightening
- Flame-like Ellerman Bombs and Their Connection to Solar UV Bursts
- A Cancellation Nanoflare Model for Solar Chromospheric and Coronal Heating II. 2D Theory and Simulations
- Is the sky the limit? Performance of the revamped Swedish 1-m Solar Telescope and its blue- and red-beam re-imaging systems
- Estimation of the magnetic flux emergence rate in the quiet Sun from Sunrise data
- Observations of Ellerman bomb emission features in He I D3 and He I 10830 Å
- A Cancellation Nanoflare Model for Solar Chromospheric and Coronal Heating III. 3D Simulations and Atmospheric Response
- Automating Ellerman bomb detection in ultraviolet continua
Cited by in corpus (22)
- Probing the physics of the solar atmosphere with the Multi-slit Solar Explorer (MUSE): I. Coronal Heating
- The Alfvénic nature of chromospheric swirls
- Ultra-high resolution observations of plasmoid-mediated magnetic reconnection in the deep solar atmosphere
- Properties of ubiquitous magnetic reconnection events in the lower solar atmosphere
- The chromosphere underneath a Coronal Bright Point
- The non-LTE formation of the Fe I 6173 A line in the solar atmosphere
- Solar surges related to UV bursts: Characterization through k-means, inversions and density diagnostics
- Signatures of ubiquitous magnetic reconnection in the deep atmosphere of sunspot penumbrae
- Design and Performance Analysis of a Highly Efficient Polychromatic Full-Stokes Polarization Modulator for the CRISP Imaging Spectrometer
- Small-scale magnetic flux emergence preceding a chain of energetic solar atmospheric events
- Shape-based clustering of synthetic Stokes profiles using k-means and k-Shape
- Formation of H in the solar atmosphere
- Transition region response to Quiet Sun Ellerman Bombs
- Magnetic Topology of quiet-Sun Ellerman bombs and associated Ultraviolet brightenings
- A reconnection driven magnetic flux cancellation and a quiet Sun Ellerman bomb
- Small-scale dynamic phenomena associated with interacting fan-spine topologies: quiet-Sun Ellerman bombs, UV brightenings, and chromospheric inverted-Y-shaped jets
- Multifrequency microwave imaging of weak transients from the quiet solar corona
- Quiet Sun Ellerman bombs as a possible proxy for reconnection-driven spicules
- Photospheric Hot Spots at Solar Coronal Loop Footpoints Revealed by Hyperspectral Imaging Observations
- Automatic detection of Ellerman bombs using Deep Learning
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)
- Small-scale energetic phenomena in Hε: Ellerman bombs, UV bursts, and small flares