Large-scale Bright Fronts in the Solar Corona: A Review of "EIT waves"
arXiv:1006.0140 · doi:10.1007/s11214-010-9710-7
Abstract
``EIT waves" are large-scale coronal bright fronts (CBFs) that were first observed in 195 Å images obtained using the Extreme-ultraviolet Imaging Telescope (EIT) onboard the \emph{Solar and Heliospheric Observatory (SOHO)}. Commonly called ``EIT waves", CBFs typically appear as diffuse fronts that propagate pseudo-radially across the solar disk at velocities of 100--700 km s with front widths of 50-100 Mm. As their speed is greater than the quiet coronal sound speed (200 km s) and comparable to the local Alfvén speed (1000 km s), they were initially interpreted as fast-mode magnetoacoustic waves (). Their propagation is now known to be modified by regions where the magnetosonic sound speed varies, such as active regions and coronal holes, but there is also evidence for stationary CBFs at coronal hole boundaries. The latter has led to the suggestion that they may be a manifestation of a processes such as Joule heating or magnetic reconnection, rather than a wave-related phenomena. While the general morphological and kinematic properties of CBFs and their association with coronal mass ejections have now been well described, there are many questions regarding their excitation and propagation. In particular, the theoretical interpretation of these enigmatic events as magnetohydrodynamic waves or due to changes in magnetic topology remains the topic of much debate.
34 pages, 19 figures
References in corpus (6)
- 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?
- Numerical Experiments of Wave-Like Phenomena Caused by the Disruption of an Unstable Magnetic Configuration
- Absorption Phenomena and a Probable Blast Wave in the 13 July 2004 Eruptive Event
- Strongly Blueshifted Phenomena Observed with {\it Hinode}/EIS in the 2006 December 13 Solar Flare
Cited by in corpus (52)
- MHD Waves and Coronal Seismology: an overview of recent results
- 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
- First Simultaneous Observation of H-alpha Moreton Wave, EUV Wave, and Filament/Prominence Oscillations
- On the Nature and Genesis of EUV Waves: A Synthesis of Observations from SOHO, STEREO, SDO, and Hinode
- First Evidence of Coexisting EIT Wave and Coronal Moreton Wave from SDO/AIA Observations
- Height of Shock Formation in the Solar Corona Inferred from Observations of Type II Radio Bursts and Coronal Mass Ejections
- Investigation of the Formation and Separation of An EUV Wave from the Expansion of A Coronal Mass Ejection
- 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
- Understanding the Physical Nature of Coronal "EIT Waves"
- Quasiperiodic acceleration of electrons by a plasmoid-driven shock in the solar atmosphere
- SDO/AIA Observations of Secondary Waves Generated by Interaction of the 2011 June 7 Global EUV Wave With Solar Coronal Structures
- Evidence for the Wave Nature of an Extreme Ultraviolet Wave Observed by the Atmospheric Imaging Assembly Onboard the Solar Dynamics Observatory
- Measuring the magnetic field of a trans-equatorial loop system using coronal seismology
- A Truly Global Extreme Ultraviolet Wave from the SOL2017-09-10 X8.2+ Solar Flare-Coronal Mass Ejection
- 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
- The Wave Properties of Coronal Bright Fronts Observed Using SDO/AIA
- Plasma diagnostics of an EIT wave observed by Hinode/EIS and SDO/AIA
- Coronal response to an EUV wave from DEM analysis
- Multiwavelength study of a Solar Eruption from AR NOAA 11112: II. Large-Scale Coronal Wave and Loop Oscillation
- Understanding CME and associated shock in the solar corona by merging multi wavelengths observation
- Phase mixing and wave heating in a complex coronal plasma
- Can a Fast-mode EUV Wave Generate a Stationary Front?
- Coronal Shock Waves, EUV Waves, and Their Relation to CMEs. III. Shock-Associated CME/EUV Wave in an Event with a Two-Component EUV Transient
- Improved methods for determining the kinematics of coronal mass ejections and coronal waves
- Peculiar Stationary EUV Wave Fronts in the eruption on 2011 May 11
- Global Coronal Waves
- CorPITA: An Automated Algorithm for the Identification and Analysis of Coronal "EIT Waves"
- Relation between the 3D-geometry of the coronal wave and associated CME during the 26 April 2008 event
- Observation of quasi-periodic solar radio bursts associated with propagating fast-mode waves
- Radio Diagnostics of Electron Acceleration Sites During the Eruption of a Flux Rope in the Solar Corona
- Responsibility of a Filament Eruption for the Initiation of a Flare, CME, and Blast Wave, and its Possible Transformation into a Bow Shock
- Quadrature Observations of Wave and Non-Wave Components and Their Decoupling in an Extreme-Ultraviolet Wave Event
- Spectroscopic analysis of interaction between an EIT wave and a coronal upflow region
- Formation of Coronal Shock Waves
- Prominence Activation by Coronal Fast Mode Shock
- A small-scale filament eruption inducing Moreton Wave, EUV Wave and Coronal Mass Ejection
- Projection effects in coronal dimmings and associated EUV wave event
- An Extreme Ultraviolet Wave Associated with A Solar Filament Activation
- An extreme ultraviolet wave generating upward secondary waves in a streamer-like solar structure
- Kinematics and Energetics of the EUV Waves on 11 April 2013
- Twin extreme ultraviolet waves in the solar corona
- Secondary fast magnetoacoustic waves trapped in randomly structured plasmas
- Multi-threaded prominence oscillations triggered by a coronal shock wave
- "Dandelion" Filament Eruption and Coronal Waves Associated with a Solar Flare on 2011 February 16
- AWARE: An algorithm for the automated characterization of EUV waves in the solar atmosphere
- Multi-Instrument Observations and Tracking of a Coronal Mass Ejection Front From Low to Middle Corona
- A coronal wave and an asymmetric eruptive filament in SUMER, CDS, EIT, and TRACE co-observations
- Homologous compact major blowout-eruption solar flares and their production of broad CMEs
- Multiscale statistical analysis of coronal solar activity
- Tracking the motion of a shock along a channel in the low solar corona