GOES class estimation for behind-the-limb solar flares using MESSENGER SAX
arXiv:2012.10221 · doi:10.3847/1538-4357/abc5c2
Abstract
Mercury mission MESSENGER's %(MErcury Surface, Space ENvironment, GEochemistry, and Ranging Solar Assembly for X-rays (SAX) observed almost 700 solar flares between May 28, 2007 and August 19, 2013, as cataloged by \citet{dennisSOLARFLAREELEMENT2015}. The SAX instrument, part of the X-ray Spectrometer (XRS), operated at 1 -- 10 keV, partially overlapping the energy range of the GOES X-ray spectrometers. SAX provides viewing angles different from the Earth-Sun line and can therefore be used as a GOES proxy for partially or fully occulted flares as seen from Earth. For flares with GOES classes above C2 seen on-disk for both instruments, we found an empirical relationship between the soft X-ray (SXR) fluxes measured by both SAX and GOES. Due to the different energy response of the two SXR instruments, individual events can deviate on average by about a factor of two from the empirical relationship, implying that predictions of the GOES class of occulted flares from SAX data are therefore accurate to within the same factor. The distinctive GOES energy response in combination with the multithermal nature of flares makes it difficult for any instrument, even other soft X-ray spectrometers, to provide a GOES proxy more accurate than a factor of two.
References in corpus (11)
- Double Coronal Hard and Soft X-ray Source Observed by RHESSI: Evidence for Magnetic Reconnection and Particle Acceleration in Solar Flares
- The Thermal Properties of Solar Flares Over Three Solar Cycles Using GOES X-ray Observations
- Microflare Heating of a Solar Active Region Observed with NuSTAR, Hinode/XRT, and SDO/AIA
- Soft X-ray Fluxes of Major Flares Far Behind the Limb as Estimated Using STEREO EUV Images
- New Solar Irradiance Measurements from the Miniature X-Ray Solar Spectrometer CubeSat
- Solar Flare Element Abundances from the Solar Assembly for X-rays (SAX) on MESSENGER
- Hard X-Ray Emission from Partially Occulted Solar Flares: RHESSI Observations in Two Solar Cycles
- Differential emission measure Analysis of a limb solar flare on 2012 July 19
- Double Coronal X-ray and Microwave Sources Associated With A Magnetic Breakout Solar Eruption
- Hot plasma in a quiescent solar active region as measured by RHESSI, XRT, and AIA
- Multiwavelength Stereoscopic Observation of the May 1, 2013 Solar Flare and CME