The development of lower-atmosphere turbulence early in a solar flare
arXiv:1812.09906 · doi:10.1126/sciadv.aav2794
Abstract
We present the first observational study of the onset and evolution of solar flare turbulence in the lower solar atmosphere on an unprecedented time scale of 1.7 s using the Interface Region Imaging Spectrograph observing plasma at a temperature of 80,000 K. At this time resolution, nonthermal spectral line broadening, indicating turbulent velocity fluctuations, precedes the flare onset at this temperature and is coincident with net blue-shifts. The broadening decreases as the flare brightens and then oscillates with a period of ~10 s. These observations are consistent with turbulence in the lower solar atmosphere at the flare onset, heating that region as it dissipates. This challenges the current view of energy release and transport in the standard solar flare model, suggesting that turbulence partly heats the lower atmosphere.
Published in Science Advances (5th December 2018)
References in corpus (5)
- Impulsive phase flare energy transport by large-scale Alfven waves and the electron acceleration problem
- Why Is Non-thermal Line Broadening of Spectral Lines in The Lower Transition Region of the Sun Independent of Spatial Resolution?
- Spatially-Resolved Nonthermal Line Broadening During The Impulsive Phase of a Solar Flare
- Transition Region and Chromospheric Signatures of Impulsive Heating Events. I. Observations
- Non-Gaussian Velocity Distributions in Solar Flares from Extreme Ultraviolet Lines: A Possible Diagnostic of Ion Acceleration
Cited by in corpus (27)
- Spectral signatures of chromospheric condensation in a major solar flare
- Probing the Physics of the Solar Atmosphere with the Multi-slit Solar Explorer (MUSE): II. Flares and Eruptions
- An observationally-constrained model of strong magnetic reconnection in the solar chromosphere. Atmospheric stratification and estimates of heating rates
- The F-CHROMA grid of 1D RADYN flare models
- MHD turbulence formation in solar flares: 3D simulation and synthetic observations
- Onset of turbulent fast magnetic reconnection observed in the solar atmosphere
- Different Signatures of Chromospheric Evaporation in Two Solar Flares Observed with IRIS
- He I 10830 Å Dimming During Solar Flares, I. The Crucial Role of Non-Thermal Collisional Ionisations
- The Spatial and Temporal Variations of Turbulence in a Solar Flare
- Numerical Modeling of Energetic Electron Acceleration, Transport, and Emission in Solar Flares: Connecting Loop-top and Footpoint Hard X-Ray Sources
- Correlated Spatiotemporal Evolution of Extreme-Ultraviolet Ribbons and Hard X-rays in a Solar Flare
- Solar Flare Ribbon Fronts I: Constraining flare energy deposition with IRIS spectroscopy
- Non-LTE inversions of a confined X2.2 flare: I. Vector magnetic field in the photosphere and chromosphere
- The existence of hot X-ray onsets in solar flares
- Probing Current Sheet Instabilities from Flare Ribbon Dynamics
- Solar flares in the Solar Orbiter era: Short-exposure EUI/FSI observations of STIX flares
- Alfvén Waves in Solar Flares
- Spectroscopic and Imaging Observations of Spatially Extended Magnetic Reconnection in the Splitting of a Solar Filament Structure
- Flare heating of the chromosphere: Observations of flare continuum from GREGOR and IRIS
- Chromospheric UV bursts and turbulent driven magnetic reconnection
- Solar flare catalog from 3 years of Chandrayaan-2 XSM observations
- The Transition Region of Solar Flare Loops
- Dual Origins of Rapid Flare Ribbon Downflows in an X9-class Solar Flare
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)
- Hard X-rays from the deep solar atmosphere. An unusual UV burst with flare properties
- Transport of electrons in tangled magnetic fields
- Specialist Discussion Meeting: 3D structure of the flare chromosphere