Autor: | Paolo C. Grigis, Arnold O. Benz |
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Rok vydání: | 2002 |
Předmět: |
Physics
Range (particle radiation) Average duration 010504 meteorology & atmospheric sciences Component (thermodynamics) Astrophysics::High Energy Astrophysical Phenomena Evaporation Astronomy and Astrophysics Astrophysics Photon energy Thermal conduction 7. Clean energy 01 natural sciences 13. Climate action Space and Planetary Science 0103 physical sciences Thermal 010303 astronomy & astrophysics Event (particle physics) 0105 earth and related environmental sciences |
Zdroj: | Solar Physics. 210:431-444 |
ISSN: | 0038-0938 |
Popis: | Open-shutter RHESSI observations of 3-15 keV X-rays are found to exhibit active region transient brightenings and microflares at a rate of at least 10 per hour occurring even during the periods of lowest solar activity so far in the mission. A thermal component fitted by temperatures of 6-14 MK dominates from 3 keV to about 9 keV, but can be traced up to 14 keV in some cases, and has an average duration of 131(+-103) seconds at 7-8 keV. The duration increases with decreasing photon energy. The peak count rate defined by cross-correlation is delayed at low energies. The temperature peaks early in the event and then decreases, whereas the emission measure increases throughout the event. The properties are consistent with thermal conduction dominating the evolution. In some of the bigger events, a second component was found in the 11-14 keV range extending down to 8 keV in some cases. The duration is typically 3 times shorter and ends near the peak time of the thermal component consistent with the Neupert effect of regular flares. Therefore the second component is suggested to be of non-thermal origin, presumably causing the beam-driven evaporation of the first component. The two components can be separated and analyzed in detail for the first time. Low-keV measurements allow a reliable estimate of the energy input by microflares necessary to assess their relevance for coronal heating. |
Databáze: | OpenAIRE |
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