Flare heating of the chromosphere: Observations of flare continuum from GREGOR and IRIS
arXiv:2408.10813 · doi:10.1051/0004-6361/202451219
Abstract
Context: On 2022 May 4, an M5.7 flare erupted in the active region NOAA 13004, which was the target of a coordinated campaign between GREGOR, IRIS, Hinode, and ground-based instruments at the Ondřejov observatory. A flare kernel located at the edge of a pore was co-observed by the IRIS slit and GREGOR HiFI+ imagers. Aims: We investigated the flare continuum enhancement at different wavelength ranges in order to derive the temperature of the chromospheric layer heated during the flare. Methods: All datasets were aligned to IRIS slit-jaw images. We selected a pixel along the IRIS slit where the flare kernel was captured and evaluated multi-wavelength light curves within it. We defined a narrow IRIS near-UV band that comprises only continuum emission. The method, which assumes that the flare continuum enhancement is due to optically thin emission from hydrogen recombination processes, was applied to obtain a lower limit on the temperature in the layer where the continuum enhancement was formed. Results: We determined a lower limit for the temperature and its time evolution in the chromospheric layer heated during the flare in the range of (3-15).10^3 K. The mean electron density in that layer was estimated to be about 1.10^(13) cm^(-3). Conclusions: Multi-wavelength flare co-observations are a rich source of diagnostics. Due to the rapidly evolving nature of flares, the sit-and-stare mode is key to achieving a high temporal cadence that allows one to thoroughly analyse the same flare structure.
14 pages, 10 figures
References in corpus (15)
- Non-equilibrium hydrogen ionization in 2D simulations of the solar atmosphere
- The Formation of Kappa-Distribution Accelerated Electron Populations in Solar Flares
- The Radiated Energy Budget of Chromospheric Plasma in a Major Solar Flare Deduced From Multi-Wavelength Observations
- Do all Flares have White Light Emission?
- Hydrogen Balmer Continuum in Solar Flares Detected by the Interface Region Imaging Spectrograph (IRIS)
- The development of lower-atmosphere turbulence early in a solar flare
- Density diagnostics derived from the OIV and SIV intercombination lines observed by IRIS
- Formation of the thermal infrared continuum in solar flares
- The F-CHROMA grid of 1D RADYN flare models
- On the nature of off-limb flare continuum sources detected by SDO/HMI
- Multi thermal atmosphere of a mini solar flare during magnetic reconnection observed with IRIS
- KW-Sun: The Konus-Wind Solar Flare Database in Hard X-ray and Soft Gamma-ray Ranges
- On the origin of the flare emission in IRIS' SJI 2832 filter: Balmer continuum or spectral lines?
- A New Titanium Oxide Index in Visual Band
- Dynamic Property and Magnetic Nonpotentiality of Two Types of Confined Solar Flares