Deceleration and Dispersion of Large-scale Coronal Bright Fronts
arXiv:1104.4334 · doi:10.1051/0004-6361/201015879
Abstract
One of the most dramatic manifestations of solar activity are large-scale coronal bright fronts (CBFs) observed in extreme ultraviolet (EUV) images of the solar atmosphere. To date, the energetics and kinematics of CBFs remain poorly understood, due to the low image cadence and sensitivity of previous EUV imagers and the limited methods used to extract the features. In this paper, the trajectory and morphology of CBFs was determined in order to investigate the varying properties of a sample of CBFs, including their kinematics and pulse shape, dispersion, and dissipation. We have developed a semi-automatic intensity profiling technique to extract the morphology and accurate positions of CBFs in 2.5-10 min cadence images from STEREO/EUVI. The technique was applied to sequences of 171A and 195A images from STEREO/EUVI in order to measure the wave properties of four separate CBF events. Following launch at velocities of ~240-450kms^{-1} each of the four events studied showed significant negative acceleration ranging from ~ -290 to -60ms^{-2}. The CBF spatial and temporal widths were found to increase from ~50 Mm to ~200 Mm and ~100 s to ~1500 s respectively, suggesting that they are dispersive in nature. The variation in position-angle averaged pulse-integrated intensity with propagation shows no clear trend across the four events studied. These results are most consistent with CBFs being dispersive magnetoacoustic waves.
15 pages, 18 figures
References in corpus (4)
Cited by in corpus (32)
- Advances in Observing Various Coronal EUV Waves in the SDO Era and Their Seismological Applications (Invited Review)
- Modelling Quasi-Periodic Pulsations in Solar and Stellar Flares
- Large-scale Coronal Propagating Fronts in Solar Eruptions as Observed by the Atmospheric Imaging Assembly on Board the Solar Dynamics Observatory\,--\,An Ensemble Study
- On the Nature and Genesis of EUV Waves: A Synthesis of Observations from SOHO, STEREO, SDO, and Hinode
- Simultaneous Transverse Oscillations of a Prominence and a Filament and Longitudinal Oscillation of another Filament Induced by a Single Shock Wave
- Understanding the Physical Nature of Coronal "EIT Waves"
- Quasiperiodic acceleration of electrons by a plasmoid-driven shock in the solar atmosphere
- Secondary Waves, and/or the "Reflection" From and "Transmission" Through a Coronal Hole of an EUV Wave Associated With the 2011 February 15 X2.2 Flare Observed With SDO/AIA and STEREO/EUVI
- The Solar Energetic Particle Event on 2013 April 11: An Investigation of its Solar Origin and Longitudinal Spread
- Evidence for the Wave Nature of an Extreme Ultraviolet Wave Observed by the Atmospheric Imaging Assembly Onboard the Solar Dynamics Observatory
- Diffraction, Refraction, and Reflection of An Extreme-Ultraviolet Wave Observed during Its Interactions with Remote Active Regions
- Measuring the magnetic field of a trans-equatorial loop system using coronal seismology
- Statistical Analysis of Large-scale EUV Waves Observed by STEREO/EUVI
- On a small-scale EUV wave: the driving mechanism and the associated oscillating filament
- Homologous large-amplitude Nonlinear fast-mode Magnetosonic Waves Driven by Recurrent Coronal Jets
- Plasma diagnostics of an EIT wave observed by Hinode/EIS and SDO/AIA
- The Wave Properties of Coronal Bright Fronts Observed Using SDO/AIA
- SDO/AIA and Hinode/EIS Observations of Interaction Between an EUV Wave and Active Region Loops
- Measuring the Magnetic Field Strength of the Quiet Solar Corona Using "EIT Waves"
- Improved methods for determining the kinematics of coronal mass ejections and coronal waves
- A Quasi-periodic propagating wave and EUV waves excited simultaneously in a solar eruption event
- CorPITA: An Automated Algorithm for the Identification and Analysis of Coronal "EIT Waves"
- An Investigation of the CME of 3 November 2011 and its Associated Widespread Solar Energetic Particle Event
- Evolution of fast magnetoacoustic pulses in randomly structured coronal plasmas
- Quadrature Observations of Wave and Non-Wave Components and Their Decoupling in an Extreme-Ultraviolet Wave Event
- Moreton and EUV Waves Associated with an X1.0 Flare and CME Ejection
- The Relation Between Large-Scale Coronal Propagating Fronts and Type II Radio Bursts
- The energetics of a global shock wave in the low solar corona
- Contribution of Velocity Vortices and Fast Shock Reflection and Refraction to the Formation of EUV Waves in Solar Eruptions
- Projection effects in coronal dimmings and associated EUV wave event
- Evolution of Plasma Composition in an Eruptive Flux Rope
- Kinematic Properties of Globally-Propagating Waves in the Solar Corona