Diffraction, Refraction, and Reflection of An Extreme-Ultraviolet Wave Observed during Its Interactions with Remote Active Regions
arXiv:1307.6098 · doi:10.1088/2041-8205/773/2/L33
Abstract
We present observations of the diffraction, refraction, and reflection of a global extreme-ultraviolet (EUV) wave propagating in the solar corona. These intriguing phenomena are observed when the wave interacts with two remote active regions, and they together exhibit the wave property of this EUV wave. When the wave approached AR11465, it became weaker and finally disappeared in the active region, but a few minutes latter a new wavefront appeared behind the active region, and it was not concentric with the incoming wave. In addition, a reflected wave was also observed simultaneously on the wave incoming side. When the wave approached AR11459, it transmitted through the active region directly and without reflection. The formation of the new wavefront and the transmission could be explained with diffraction and refraction effects, respectively. We propose that the different behaviors observed during the interactions may caused by different speed gradients at the boundaries of the two active regions. For the origin of the EUV wave, we find that it formed ahead of a group of expanding loops a few minutes after the start of the loops' expansion, which represents the initiation of the associated coronal mass ejection (CME). Based on these results, we conclude that the EUV wave should be a nonlinear magnetosonic wave or shock driven by the associated CME, which propagated faster than the ambient fast-mode speed and gradually slowed down to an ordinary linear wave. Our observations support the hybrid model that includes both fast wave and slow non-wave components.
It has been published by APJL, http://iopscience.iop.org/2041-8205/773/2/L33/
References in corpus (4)
- 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
- First Evidence of Coexisting EIT Wave and Coronal Moreton Wave from SDO/AIA Observations
- Off-limb Solar Coronal Wavefronts From SDO/AIA EUV Observations - Implications For Particle Production
Cited by in corpus (39)
- Advances in Observing Various Coronal EUV Waves in the SDO Era and Their Seismological Applications (Invited Review)
- Observation and Modeling of Solar Jets
- A Chain of Winking (Oscillating) Filaments Triggered by an Invisible Extreme-Ultraviolet Wave
- 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"
- Measuring the magnetic field of a trans-equatorial loop system using coronal seismology
- A quasi-periodic fast-propagating magnetosonic wave associated with the eruption of a magnetic flux rope
- 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
- Coronal Quasi-periodic Fast-mode Propagating Wave Trains
- First Unambiguous Imaging of Large-Scale Quasi-Periodic Extreme-Ultraviolet Wave or Shock
- EUV Waves Driven by the Sudden Expansion of Transequatorial Loops Caused by Coronal Jets
- Coronal EUV, QFP, and kink waves simultaneously launched during the course of jet-loop interaction
- Can a Fast-mode EUV Wave Generate a Stationary Front?
- Three-dimensional Propagation of the Global EUV Wave associated with a solar eruption on 2021 October 28
- A Quasi-periodic propagating wave and EUV waves excited simultaneously in a solar eruption event
- CME-Driven and Flare-Ignited Fast Magnetosonic Waves Successively Detected in a Solar Eruption
- CorPITA: An Automated Algorithm for the Identification and Analysis of Coronal "EIT Waves"
- Global Coronal Waves
- A blowout jet associated with one obvious extreme-ultraviolet wave and one complicated coronal mass ejection event
- Evolution of fast magnetoacoustic pulses in randomly structured coronal plasmas
- Impacts of EUV Wavefronts on Coronal Structures in Homologous Coronal Mass Ejections
- Resolved magnetohydrodynamic wave lensing in the solar corona
- Total reflection of a flare-driven quasi-periodic EUV wave train at a coronal hole boundary
- Mode-Conversion of a Solar Extreme-Ultraviolet Wave over a Coronal Cavity
- Effects of Coronal Density and Magnetic Field Distributions on a Global Solar EUV Wave
- Observations of Two Successive EUV Waves and their Mode Conversion
- Observations of a Flare-ignited broad Quasi-periodic Fast-propagating wave train
- Exploring the Nature of EUV Waves in a Radiative Magnetohydrodynamic Simulation
- Contribution of Velocity Vortices and Fast Shock Reflection and Refraction to the Formation of EUV Waves in Solar Eruptions
- Two Quasi-periodic Fast-propagating Magnetosonic Wave Events Observed In Active Region NOAA 11167
- Dispersively Formed Quasi-Periodic Fast Magnetosonic Wavefronts Due to the Eruption of a Nearby Mini-filament
- Cross-loop propagation of a quasi-periodic extreme-ultraviolet wave train triggered by successive stretching of magnetic field structures during a solar eruption
- Extreme-Ultraviolet Wave and Accompanying Loop Oscillations
- Radio evidence for a shock wave reflected by a coronal hole
- Secondary fast magnetoacoustic waves trapped in randomly structured plasmas
- Coronal and Chromospheric Signatures of Large-Scale Disturbances Associated with a Major Solar Eruption
- Numerical study of solar eruption, extreme-ultraviolet wave propagation, and wave-induced prominence dynamics
- Limb Observations of Global Solar Coronal Extreme-ultraviolet Wavefronts: The Inclination, Kinematics, Coupling with the Expanding Coronal Mass Ejections, and Connection with the Coronal Mass Ejection Driven Shocks