A Simple Way to Estimate the Soft X-ray Class of Far-Side Solar Flares Observed with STEREO/EUVI
arXiv:1505.01649 · doi:10.1007/s11207-015-0738-4
Abstract
Around the peaks of substantial flares, bright artifact nearly horizontal saturation streaks (B-streaks) corresponding to the brightest parts of the flare sources appear in the STEREO/EUVI 195 A images. We show that the length of such B-streaks can be used for the solution of an actual problem of evaluating the soft X-ray flux and class of far-side flares registered with double STEREO spacecraft but invisible from Earth. For this purpose from data on about 350 flares observed from January 2007 to July 2014 (mainly exceeding the GOES M1.0 level) both with GOES and STEREO, an empirical relation is established correlating the GOES 1-8 A peak flux and the B-streak length. This allowed us for the same years to estimate the soft X-ray classes for approximately 65 strong far-side flares observed by STEREO. The results of this simple and prompt method are consistent with the estimations of Nitta et al. (Solar Phys., 288, 241, 2013) based on the calculations of the EUVI full-disk digital number output. In addition, we studied some features of the B-streaks in impulsive and long-duration flares and demonstrated that B-streaks in several consecutive EUVI images can be used to reconstruct a probable time history of strong far-side flares.
16 pages, 7 figures, 2 tables. Submitted to Solar Physics
References in corpus (6)
- Observations of an extreme storm in interplanetary space caused by successive coronal mass ejections
- Interplanetary Propagation Behavior of the Fast Coronal Mass Ejection from 23 July 2012
- Ground Level Enhancement in the 2014 January 6 Solar Energetic Particle Event
- Soft X-ray Fluxes of Major Flares Far Behind the Limb as Estimated Using STEREO EUV Images
- Magnetic Flux of EUV Arcade and Dimming Regions as a Relevant Parameter for Early Diagnostics of Solar Eruptions - Sources of Non-Recurrent Geomagnetic Storms and Forbush Decreases
- A Challenging Solar Eruptive Event of 18 November 2003 and the Causes of the 20 November Geomagnetic Superstorm. IV. Unusual Magnetic Cloud and Overall Scenario
Cited by in corpus (9)
- Relations between Microwave Bursts and near-Earth High-Energy Proton Enhancements and their Origin
- Multi-instrument view on solar eruptive events observed with the Siberian Radioheliograph: From detection of small jets up to development of a shock wave and CME
- A Tiny Eruptive Filament as a Flux-Rope Progenitor and Driver of a Large-Scale CME and Wave
- Radio, Hard X-Ray, and Gamma-Ray Emissions Associated with a Far-Side Solar Event
- Source of Energetic Protons in the 2014 September 1 Sustained Gamma-ray Emission Event
- Solar energetic particle catalogs: assumptions, uncertainties and validity of reports
- The 26 December 2001 Solar Event Responsible for GLE63. I. Observations of a Major Long-Duration Flare with the Siberian Solar Radio Telescope
- Multiwavelength Stereoscopic Observation of the May 1, 2013 Solar Flare and CME
- GOES class estimation for behind-the-limb solar flares using MESSENGER SAX