Height structure of X-ray, EUV and white-light emission in a solar flare
arXiv:1107.3808 · doi:10.1051/0004-6361/201117605
Abstract
The bulk of solar flare emission originates from very compact sources located in the lower solar atmosphere and seen in various wavelength ranges: near optical, UV, EUV, soft and hard X-rays, and gamma-ray emission, yet very few spatially resolved imaging observations to determine the structure of these regions exist. We investigate the above-the-photosphere heights of hard X-ray (HXR), EUV and white-light continuum sources in the low atmosphere and the corresponding densities at these heights. Simultaneous EUV/continuum images from SDO and HXR RHESSI images are compared to study a well observed gamma-ray limb flare. Using RHESSI X-ray visibilities we determine the height of the HXR sources as a function of energy above the photosphere. Co-aligning AIA/SDO and HMI/SDO images with RHESSI we infer, for the first time, the heights and characteristic densities of HXR, EUV and continuum sources in a flaring footpoint. 35-100 keV HXR sources are found at heights between 1.7 and 0.8 Mm above the photosphere, below the white-light continuum emission which appears at heights 1.5-3 Mm, and the peak of EUV emission originating near 3 Mm. The EUV emission locations are consistent with energy deposition from low energy electrons of ~12 keV occurring in the top layers of the fully ionized chromosphere/low corona and not by >20 keV electrons that produce HXR footpoints in the lower neutral chromosphere. The maximum of white-light emission appears between the HXR and EUV emission, presumably in the transition between ionized and neutral atmospheres suggesting free-bound and free-free continuum emission. We note that the energy deposited by low energy electrons is sufficient to explain the energetics of optical and UV emissions.
3 figures, submitted to Astronomy and Astrophysics Letters
References in corpus (8)
- Sun-as-a-star Observation of White-Light Flares
- Chromospheric magnetic field and density structure measurements using hard X-rays in a flaring coronal loop
- G-band and Hard X-ray Emissions of the 2006 December 14 flare observed by Hinode/SOT and RHESSI
- The sub-arcsecond hard X-ray structure of loop footpoints in a solar flare
- Positions and sizes of X-ray solar flare sources
- Hard X-ray footpoint sizes and positions as diagnostics of flare accelerated energetic electrons in the low solar atmosphere
- Statistically-derived flaring chromospheric-coronal density structure from non-thermal X-ray observations of the Sun
- The optical depth of white-light flare continuum
Cited by in corpus (23)
- Solar science with the Atacama Large Millimeter/submillimeter Array - A new view of our Sun
- The height of a white-light flare and its hard X-ray sources
- Implications for electron acceleration and transport from non-thermal electron rates at looptop and footpoint sources in solar flares
- The Kelvin-Helmholtz Instability at CME-Boundaries in the Solar Corona: Observations and 2.5D MHD Simulations
- Collisional relaxation of electrons in a warm plasma and accelerated nonthermal electron spectra in solar flares
- Wave-particle interactions in non-uniform plasma and the interpretation of Hard X-ray spectra in solar flares
- Can flare loops contribute to the white-light emission of stellar superflares ?
- On the variation of solar flare coronal x-ray source sizes with energy
- RHESSI and SDO/AIA observations of the chromospheric and coronal plasma parameters during a solar flare
- The Atmospheric Response to High Nonthermal Electron Beam Fluxes in Solar Flares. II. Hydrogen Broadening Predictions for Solar Flare Observations with the Daniel K. Inouye Solar Telescope
- Time-variable electromagnetic star-planet interaction: The TRAPPIST-1 system as an exemplary case
- Spectral Evidence for Heating at Large Column Mass in Umbral Solar Flare Kernels I: IRIS NUV Spectra of the X1 Solar Flare of 2014 Oct 25
- Emission Height and Temperature Distribution of White-Light Emission Observed by Hinode/SOT from the 2012 January 27 X-class Solar Flare
- Characteristics that Produce White-Light Enhancements in Solar Flares Observed by Hinode/SOT
- Possible Detection of Subsecond-period Propagating Magnetohydrodynamics Waves in Post-reconnection Magnetic Loops during a Two-ribbon Solar Flare
- Frequency rising sub-THz emission from solar flare ribbons
- Horizontal flows concurrent with an X2.2 flare in active region NOAA 11158
- The Energetics of White-light Flares Observed by SDO/HMI and RHESSI
- Temporal evolution and spatial distribution of white-light flare kernels in a solar flare
- Spatio-temporal energy partitioning in a non-thermally dominated two-loop solar flare
- Detection of acceleration processes during the initial phase of the 12 June 2010 flare
- Simultaneous ALMA-Hinode-IRIS observations on footpoint signatures of a soft X-ray loop-like microflare
- Flare-accelerated Electrons in the Kappa Distribution from X-Ray Spectra with the Warm-Target Model