Dynamics of plasma heating and energy distributions of accelerated electrons during solar flares based on X-ray and ultraviolet emission
Galina G. Motorina

TL;DR
This paper develops new techniques to analyze solar flare properties by reconstructing electron energy distributions from combined X-ray and EUV observations, enhancing understanding of plasma heating and energy dynamics.
Contribution
Introduces novel methods for reconstructing electron energy spectra and plasma parameters from multi-wavelength solar flare data, integrating X-ray and EUV observations.
Findings
Successfully reconstructed electron spectra using new techniques.
Determined plasma parameters like temperature and density.
Analyzed thermal balance within the standard flare model.
Abstract
The aim of the thesis is the study of properties of solar flares via reconstruction of energy distributions of accelerated/heated electrons, diagnostics of flare plasma based on EUV and X-ray observations, as well as the estimation of the thermal balance within the "standard" flare model. The X-ray data were obtained from the Ramaty High Energy Solar Spectroscopic Imager (RHESSI) and the Russian solar observatory KORONAS-F (IRIS experiment). The EUV data were obtained from the Solar Dynamics Observatory / Atmospheric Imaging Assembly (SDO/AIA). In the first chapter a new technique is presented, which allowed to determine at first the photon spectra based on the KORONAS-F/IRIS observations and then to reconstruct the energy spectra of the emitting electrons using the random search method and the Tikhonov regularization method. In the second chapter the developed technique of…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Ionosphere and magnetosphere dynamics · Astro and Planetary Science
