Impulsive coronal heating during the interaction of surface magnetic fields in the lower solar atmosphere
arXiv:2010.12560 · doi:10.1051/0004-6361/202039099
Abstract
Coronal plasma in the cores of solar active regions is impulsively heated to more than 5 MK. The nature and location of the magnetic energy source responsible for such impulsive heating is poorly understood. Using observations of seven active regions from the Solar Dynamics Observatory, we found that a majority of coronal loops hosting hot plasma have at least one footpoint rooted in regions of interacting mixed magnetic polarity at the solar surface. In cases when co-temporal observations from the Interface Region Imaging Spectrograph space mission are available, we found spectroscopic evidence for magnetic reconnection at the base of the hot coronal loops. Our analysis suggests that interactions of magnetic patches of opposite polarity at the solar surface and the associated energy release during reconnection are key to impulsive coronal heating.
Published in Astronomy & Astrophysics. Online movies available at https://www.aanda.org/articles/aa/olm/2020/12/aa39099-20/aa39099-20.html
References in corpus (29)
- The Interface Region Imaging Spectrograph (IRIS)
- On Solving the Coronal Heating Problem
- Hot Explosions in the Cool Atmosphere of the Sun
- Multi-scale Gaussian normalization for solar image processing
- Evidence of Non-Thermal Particles in Coronal Loops Heated Impulsively by Nanoflares
- A Systematic Survey of High Temperature Emission in Solar Active Regions
- Microflares and the Statistics of X-ray Flares
- Solar ultraviolet bursts
- Homologous Helical Jets: Observations by IRIS, SDO and Hinode and Magnetic Modeling with Data-Driven Simulations
- Multiwavelength Observations of Small-Scale Reconnection Events triggered by Magnetic Flux Emergence in the Solar Atmosphere
- The Formation of IRIS diagnostics. IV. The Mg II triplet lines as a new diagnostic for lower chromospheric heating
- A Cancellation Nanoflare Model for Solar Chromospheric and Coronal Heating
- On the nature of reconnection at a solar coronal null point above a separatrix dome
- Solar Coronal Loops Associated with Small-scale Mixed Polarity Surface Magnetic Fields
- Dynamics of the solar magnetic bright points derived from their horizontal motions
- The spectral content of SDO/AIA 1600 and 1700 Å filters from flare and plage observations
- Compact solar UV burst triggered in a magnetic field with a fan-spine topology
- Plasmoid-mediated reconnection in solar UV bursts
- A magnetic reconnection event in the solar atmosphere driven by relaxation of a twisted arch filament system
- IRIS observations of short-term variability in moss associated with transient hot coronal loops
- Trigger Mechanism of Solar Subflares in a Braided Coronal Magnetic Structure
- A Cancellation Nanoflare Model for Solar Chromospheric and Coronal Heating II. 2D Theory and Simulations
- Onset of turbulent fast magnetic reconnection observed in the solar atmosphere
- Limitations of force-free magnetic field extrapolations: revisiting basic assumptions
- A Cancellation Nanoflare Model for Solar Chromospheric and Coronal Heating III. 3D Simulations and Atmospheric Response
- New Evidence that Magnetoconvection Drives Solar-Stellar Coronal Heating
- Energetics of magnetic transients in a solar active region plage
- Observation and Modeling of Chromospheric Evaporation in a Coronal Loop Related to Active Region Transient Brightening
- Observations of solar chromospheric heating at sub-arcsec spatial resolution
Cited by in corpus (19)
- Probing the physics of the solar atmosphere with the Multi-slit Solar Explorer (MUSE): I. Coronal Heating
- Solar coronal heating from small-scale magnetic braids
- Ultra-high-resolution Observations of Persistent Null-point Reconnection in the Solar Corona
- The magnetic drivers of campfires seen by the Polarimetric and Helioseismic Imager (PHI) on Solar Orbiter
- Extreme-ultraviolet bursts and nanoflares in the quiet-Sun transition region and corona
- Three-dimensional magnetic reconnection in astrophysical plasmas
- What drives decayless kink oscillations in active region coronal loops on the Sun?
- Sunrise III: Overview of Observatory and Instruments
- NuSTAR observations of a repeatedly microflaring active region
- Formation of solar quiescent coronal loops through magnetic reconnection in an emerging active region
- Coronal Heating and Solar Wind Generation by Flux Cancellation Reconnection
- Fleeting Small-scale Surface Magnetic Fields Build the Quiet-Sun Corona
- Particle heating and acceleration by reconnecting and non-reconnecting Current Sheets
- Transient Formation of Loops in the Core of an Active Region
- Assessing the capability of a model-based stellar XUV estimation
- Spectroscopic and imaging observations of transient hot and cool loops by IRIS and SDO
- Morphological evidence for nanoflares heating warm loops in the solar corona
- Heating in the Solar Atmosphere at a Fin Current Sheet Driven by Magnetic Flux Cancellation
- Hard X-rays from the deep solar atmosphere. An unusual UV burst with flare properties