Solar flare ribbons structured by uncombed chromospheric loops
arXiv:2606.10505 · doi:10.3847/2041-8213/ae7bf1
Abstract
A part of the magnetic energy released during a flare is transported to the lower atmosphere. High-resolution observations show that flare ribbons, sites of energy deposition at the footpoints of flaring loops which appear bright in the chromosphere and transition region, are structured on small spatial scales on the order of 100 km. Based on idealized numerical models of flares it is suggested that the ribbon fine-structures could originate from a tearing instability and the development of plasmoids in current sheets. Here we report on Fe I 5250.6 Å and Mg I b2 5173 Å spectral observations of a solar flare from the Tunable Magnetograph onboard the SUNRISE III balloon-borne mission that reveal an intricate link between the flare ribbon structure and the ambient chromosphere. We identified uncombed chromospheric loops and non-flaring fine-structures that are interspersed among brighter flare ribbon threads. These loops remain stable on timescales of minutes. Spectral lines from these regions show reduced emission or self-reversal in the line core compared with the immediately adjacent flare ribbons. We discuss the potential role of these structures in the onset of a flare. Furthermore, we suggest that irrespective of the complexities in the flaring current sheet, uncombed chromospheric loops and nonflaring fine-structure might play a role in spatially modulating the flare energy deposition in the lower atmosphere.
Accepted for publication in the Astrophysical Journal Letters (Part of the SUNRISE III Focus Issue). Online animations available from the corresponding author
References in corpus (30)
- Sunrise: instrument, mission, data and first results
- The Sunrise Mission
- Multi-scale Gaussian normalization for solar image processing
- The Chinese Hα Solar Explorer (CHASE) mission: An overview
- The second flight of the SUNRISE balloon-borne solar observatory: overview of instrument updates, the flight, the data and first results
- A Database of Flare Ribbon Properties From Solar Dynamics Observatory I: Reconnection Flux
- Slipping Magnetic Reconnection, Chromospheric Evaporation, Implosion, and Precursors in the 2014 September 10 X1.6-Class Solar Flare
- Unprecedented Fine Structure of a Solar Flare Revealed by the 1.6~m New Solar Telescope
- Properties of a solar flare kernel observed by Hinode and SDO
- Calibration procedures for the CHASE/HIS science data
- Identifying typical Mg II flare spectra using machine learning
- Solar coronal heating from small-scale magnetic braids
- Flare Ribbon Energetics in the Early Phase of an SDO Flare
- A parameter study for modeling MgII h and k emission during solar flares
- MHD turbulence formation in solar flares: 3D simulation and synthetic observations
- Sunrise III: Overview of Observatory and Instruments
- Quiet-Sun imaging asymmetries in NaI D1 compared with other strong Fraunhofer lines
- Solar Flare Ribbon Fronts I: Constraining flare energy deposition with IRIS spectroscopy
- Is flare-ribbon fine structure related to tearing in the flare current sheet?
- Properties and Energetics of Magnetic Reconnection: I. Evolution of Flare Ribbons
- From Formation to Disruption: Observing the Multiphase Evolution of a Solar Flare Current Sheet
- Spectral variations within solar flare ribbons
- Physical properties of a fan-shaped jet backlit by an X9.3 flare
- A magnetic avalanche as the central engine powering a solar flare
- Solar flares in the Solar Orbiter era: Short-exposure EUI/FSI observations of STIX flares
- Chromospheric velocities in an M3.2 flare using He I 1083.0 nm and Ca II 854.2 nm
- Spectroscopic and Imaging Observations of Spatially Extended Magnetic Reconnection in the Splitting of a Solar Filament Structure
- Diagnosing the solar atmosphere through the Mg I b 5173 Å line. I. Nonlocal thermodynamic equilibrium inversions versus traditional inferences
- Diagnosing the solar atmosphere through the Mg I b 5173 Å line. II. Morphological classification of the intensity and circular polarization profiles
- Hard X-rays from the deep solar atmosphere. An unusual UV burst with flare properties