Flare Ribbon Energetics in the Early Phase of an SDO Flare
arXiv:1401.6538 · doi:10.1088/0004-637X/771/2/104
Abstract
The sites of chromospheric excitation during solar flares are marked by extended extreme ultraviolet ribbons and hard X-ray footpoints. The standard interpretation is that these are the result of heating and bremsstrahlung emission from non-thermal electrons precipitating from the corona. We examine this picture using multi-wavelength observations of the early phase of an M-class flare SOL2010-08-07T18:24. We aim to determine the properties of the heated plasma in the flare ribbons, and to understand the partition of the power input into radiative and conductive losses. Using GOES, SDO/EVE, SDO/AIA and RHESSI we measure the temperature, emission measure and differential emission measure of the flare ribbons, and deduce approximate density values. The non-thermal emission measure, and the collisional thick target energy input to the ribbons are obtained from RHESSI using standard methods. We deduce the existence of a substantial amount of plasma at 10 MK in the flare ribbons, during the pre-impulsive and early-impulsive phase of the flare. The average column emission measure of this hot component is a few times 10^28/cm^5, and we can calculate that its predicted conductive losses dominate its measured radiative losses. If the power input to the hot ribbon plasma is due to collisional energy deposition by an electron beam from the corona then a low-energy cutoff of around 5 keV is necessary to balance the conductive losses, implying a very large electron energy content. Independent of the standard collisional thick-target electron beam interpretation, the observed non-thermal X-rays can be provided if one electron in 10^3 - 10^4 in the 10 MK (1 keV) ribbon plasma has an energy above 10 keV. We speculate that this could arise if a non-thermal tail is generated in the ribbon plasma which is being heated by other means, for example by waves or turbulence.
14 Pages, 13 Figures
References in corpus (3)
Cited by in corpus (31)
- Critical Science Plan for the Daniel K. Inouye Solar Telescope (DKIST)
- The Radiated Energy Budget of Chromospheric Plasma in a Major Solar Flare Deduced From Multi-Wavelength Observations
- Chromospheric Condensation and Quasi-periodic Pulsations in a Circular-ribbon Flare
- Hot X-ray Onsets of Solar Flares
- SDO/AIA Observations of a Reflecting Longitudinal Wave in a Coronal Loop
- Probing the Physics of the Solar Atmosphere with the Multi-slit Solar Explorer (MUSE): II. Flares and Eruptions
- Thermal-nonthermal energy partition in solar flares derived from X-ray, EUV, and bolometric observations
- Investigating the differential emission measure and energetics of microflares with combined SDO/AIA and RHESSI observations
- Large-scale contraction and subsequent disruption of coronal loops during various phases of the M6.2 flare associated with the confined flux rope eruption
- Investigating Energetic X-Shaped Flares on the Outskirts of A Solar Active Region
- Observations and Modelling of the Pre-Flare Period of the 29 March 2014 X1 Flare
- Generation mechanisms of quasi-parallel and quasi-circular flare ribbons in a confined flare
- The Slowly Varying Corona: I --- Daily Differential Emission Measure Distributions Derived from EVE Spectra
- Impulsive Heating of Solar Flare Ribbons Above 10 MK
- Energy partition in two M-class circular-ribbon flares
- Statistical analysis of the onset temperature of solar flares in 2010-2011
- Solar Flare Impulsive Phase Emission Observed with SDO/EVE
- Observations of solar flares with IRIS and SDO
- Departure of high temperature iron lines from the equilibrium state in flaring solar plasmas
- Successive occurrences of quasi-circular ribbon flares in a fan-spine-like configuration involving hyperbolic flux tube
- Fast degradation of the circular flare ribbon on 2014 August 24
- Determining Energy Balance in the Flaring Chromosphere from Oxygen V Line Ratios
- From Chromospheric Evaporation to Coronal Rain: An Investigation of the Mass and Energy Cycle of a Flare
- Where is the chromospheric response to conductive energy input from a hot pre-flare coronal loop?
- Alfvén Waves in Solar Flares
- GRID-SITES: Gridded Solar Iterative Temperature Emission Solver for Fast DEM Inversion
- Call and Response: A Time-Resolved Study of Chromospheric Evaporation in a Large Solar Flare
- Electron plasma wake field acceleration in solar coronal and chromospheric plasmas
- Impulsivity Parameter for Solar Flares
- Energy partition in a confined flare with an extreme-ultraviolet late phase
- Solar flare ribbons structured by uncombed chromospheric loops