Relationship between Hard and Soft X-ray Emission Components of a Solar Flare
arXiv:1012.4346 · doi:10.1088/0004-637X/728/1/4
Abstract
X-ray observations of solar flares routinely reveal an impulsive high-energy and a gradual low-energy emission component, whose relationship is one of the key issues of solar flare study. The gradual and impulsive emission components are believed to be associated with, respectively, the thermal and nonthermal components identified in spectral fitting. In this paper, a prominent about 50 second hard X-ray (HXR) pulse of a simple GOES class C7.5 flare on 20 February 2002 is used to study the association between high energy, non-thermal and impulsive evolution, and low energy, thermal and gradual evolution. We use regularized methods to obtain time derivatives of photon fluxes to quantify the time evolution as a function of photon energy, obtaining a break energy between impulsive and gradual behavior. These break energies are consistent with a constant value of about 11 keV in agreement with those found spectroscopically between thermal and non-thermal components, but the relative errors of the former are greater than 15% and much greater than the a few percent errors found from the spectral fitting. These errors only weakly depend on assuming an underlying spectral model for the photons, pointing to the current data being inadequate to reduce the uncertainties rather than there being a problem associated with an assumed model. The time derivative method is used to test for the presence of a 'pivot energy' in this flare. Although these pivot energies are marginally consistent with a constant value of about 9 keV, its values in the HXR rise phase appear to be lower than those in the decay phase.
References in corpus (10)
- Impulsive phase flare energy transport by large-scale Alfven waves and the electron acceleration problem
- The spectral evolution of impulsive solar X-ray flares
- Relations between concurrent hard X-ray sources in solar flares
- Observations of conduction driven evaporation in the early rise phase of solar flares
- The effect of wave-particle interactions on low energy cutoffs in solar flare electron spectra
- Electron Acceleration in Solar Flares: Theory of Spectral Evolution
- Low-energy cutoffs in electron spectra of solar flares: statistical survey
- The spectral evolution of impulsive solar X-ray flares. II.Comparison of observations with models
- Elementary Energy Release Events in Solar Flares
- Elementary Energy Release Events in Flaring Loops: Effects of Chromospheric Evaporation on X-rays
Cited by in corpus (5)
- Impulsive Thermal X-ray Emission from a Low-lying Coronal Loop
- Plasma heating in solar flares and their soft and hard X-ray emissions
- Identification of multiple hard X-ray sources in solar flares: A Bayesian analysis of the February 20 2002 event
- Onset of Electron Acceleration in a Flare Loop
- Investigating Pre-flare Signatures in Spectroscopic Observations of an X9-class Solar Flare