Multiwavelength Stereoscopic Observation of the May 1, 2013 Solar Flare and CME
arXiv:2012.10179 · doi:10.3847/1538-4357/ab4a0a
Abstract
A M-class behind-the-limb solar flare on 1 May 2013 (SOL2013-05-01T02:32), accompanied by a ( 400 km/s) CME was observed by several space-based observatories with different viewing angles. We investigated the RHESSI-observed occulted hard X-ray emissions that originated at least 0.1 \solrad{} above the flare site. Emissions below 10 keV revealed a hot, extended (11 MK, >60 arcsec) thermal source from the escaping CME core, with densities around cm. In such a tenuous hot plasma, ionization times scales are several minutes, consistent with the non-detection of the hot CME core in SDO/AIA's 131 Å filter. The non-thermal RHESSI source originated from an even larger area (100 arcsec) at lower densities ( cm) located above the hot core, but still behind the CME front. This indicates that the observed part of the non-thermal electrons are not responsible for heating the CME core. Possibly the hot core was heated by non-thermal electrons before it became visible from Earth, meaning that the un-occulted part of the non-thermal emission likely originates from a more tenuous part of the CME core, where non-thermal electrons survive long enough to became visible from Earth. Simultaneous hard X-ray spectra from the Mars Odyssey mission, which viewed the flare on disk, indicated that the number of non-thermal electrons 20 keV within the high coronal source is 0.1 - 0.5\% compared to the number within the chromospheric flare ribbons. The detection of high coronal hard X-ray sources in this moderate size event suggests that such sources are likely a common feature within solar eruptive events.
References in corpus (7)
- Double Coronal Hard and Soft X-ray Source Observed by RHESSI: Evidence for Magnetic Reconnection and Particle Acceleration in Solar Flares
- Relations between concurrent hard X-ray sources in solar flares
- Fermi-LAT Observations of High-energy Behind-the-limb Solar Flares
- Estimation of a Coronal Mass Ejection Magnetic Field Strength using Radio Observations of Gyrosynchrotron Radiation
- Soft X-ray Fluxes of Major Flares Far Behind the Limb as Estimated Using STEREO EUV Images
- Catalog of Hard X-ray Solar Flares Detected with Mars Odyssey/HEND from the Mars Orbit in 2001-2016
- The Solar X-ray Limb