The energetics of a global shock wave in the low solar corona
arXiv:1412.2964 · doi:10.1088/0004-637X/799/2/224
Abstract
As the most energetic eruptions in the solar system, coronal mass ejections (CMEs) can produce shock waves at both their front and flanks as they erupt from the Sun into the heliosphere. However, the amount of energy produced in these eruptions, and the proportion of their energy required to produce the waves, is not well characterised. Here we use observations of a solar eruption from 2014 February 25 to estimate the energy budget of an erupting CME and the globally-propagating "EIT wave" produced by the rapid expansion of the CME flanks in the low solar corona. The "EIT wave" is shown using a combination of radio spectra and extreme ultraviolet images to be a shock front with a Mach number greater than one. Its initial energy is then calculated using the Sedov-Taylor blast-wave approximation, which provides an approximation for a shock front propagating through a region of variable density. This approach provides an initial energy estimate of 2.810 ergs to produce the "EIT wave", which is approximately 10% the kinetic energy of the associated CME (shown to be 2.510 ergs). These results indicate that the energy of the "EIT wave" may be significant and must be considered when estimating the total energy budget of solar eruptions.
12 pages, 6 figures. Accepted for publication in The Astrophysical Journal
References in corpus (7)
- Advances in Observing Various Coronal EUV Waves in the SDO Era and Their Seismological Applications (Invited Review)
- Quasi-periodic Fast-mode Wave Trains Within a Global EUV Wave and Sequential Transverse Oscillations Detected by SDO/AIA
- High cadence observations of a global coronal wave by EUVI/STEREO
- The Kinematics of a Globally Propagating Disturbance in the Solar Corona
- Are "EIT Waves" Fast-Mode MHD Waves?
- The formation heights of coronal shocks from 2D density and Alfvén speed maps
- CorPITA: An Automated Algorithm for the Identification and Analysis of Coronal "EIT Waves"