First Unambiguous Imaging of Large-Scale Quasi-Periodic Extreme-Ultraviolet Wave or Shock
arXiv:1901.08199 · doi:10.3847/1538-4357/ab01dd
Abstract
We report the first unambiguous quasi-periodic large-scale extreme-ultraviolet (EUV) wave or shock that was detected by the Atmospheric Imaging Assembly on board the Solar Dynamics Observatory. During the whip-like unwinding eruption of a small filament on 2012 April 24, multiple consecutive large-scale wavefronts emanating from AR11467 were observed simultaneously along the solar surface and a closed transequatorial loop system. In the meantime, an upward propagating dome-shaped wavefront was also observed, whose initial speed and deceleration are about 1392 km/s and 1.78 km/s^2, respectively. Along the solar surface, the quasi-peridoic wavefronts had a period of about 163 +/- 21 seconds and propagated at a nearly constant speed of 747 +/- 26 km/s; they interacted with active region AR11469 and launched a sympathetic upward propagating secondary EUV wave. The wavefronts along the loop system propagated at a speed of 897 km/s, and they were reflected back at the southern end of the loop system at a similar speed. In addition to the propagating waves, a standing kink wave was also present in the loop system simultaneously. Periodicity analysis reveals that the period of the wavefronts was consistent with that of the unwinding helical structures of the erupting filament. Based on these observational facts, we propose that the observed quasi-periodic EUV wavefronts were most likely excited by the periodic unwinding motion of the filament helical structures. In addition, two different seismological methods are applied to derive the magnetic field strength of the loop system, and for the first time the reliability of these inversion techniques are tested with the same magnetic structure.
23 pages, 6 figures, accepted by APJ
References in corpus (26)
- Thermal Diagnostics with the Atmospheric Imaging Assembly onboard the Solar Dynamics Observatory: A Validated Method for Differential Emission Measure Inversions
- 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
- The Kinematics of a Globally Propagating Disturbance in the Solar Corona
- Kinematics and Fine Structure of An Unwinding Polar Jet Observed by SDO/AIA
- First Evidence of Coexisting EIT Wave and Coronal Moreton Wave from SDO/AIA Observations
- Are "EIT Waves" Fast-Mode MHD Waves?
- Numerical Experiments of Wave-Like Phenomena Caused by the Disruption of an Unstable Magnetic Configuration
- 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
- On a solar blowout jet: driven mechanism and the formation of cool and hot components
- Understanding the Physical Nature of Coronal "EIT Waves"
- Observational Test of Coronal Magnetic Field Models I. Comparison with Potential Field Model
- Statistical Analysis of Large-scale EUV Waves Observed by STEREO/EUVI
- A quasi-periodic fast-propagating magnetosonic wave associated with the eruption of a magnetic flux rope
- Absorption Phenomena and a Probable Blast Wave in the 13 July 2004 Eruptive Event
- On a small-scale EUV wave: the driving mechanism and the associated oscillating filament
- A Type II Radio Burst without a Coronal Mass Ejection
- Quasi-Periodic Radio Bursts Associated with Fast-mode Waves near a Magnetic Null Point
- A Quasi-periodic propagating wave and EUV waves excited simultaneously in a solar eruption event
- Quasi-periodic pulsations with periods that change depending on whether the pulsations have thermal or nonthermal components
- A Statistical Analysis of the Solar Phenomena Associated with Global EUV Waves
- Partial Reflection and Trapping of a Fast-mode Wave in Solar Coronal Arcade Loops
- Quasi-periodic pulsations with multiple periods in hard X-ray emission
- Mode-Conversion of a Solar Extreme-Ultraviolet Wave over a Coronal Cavity
- The Broken Lane of a Type II Radio Burst Caused by Collision of a Coronal Shock with a Flare Current Sheet
Cited by in corpus (18)
- Observation and Modeling of Solar Jets
- Magnetohydrodynamic Fast Sausage Waves in the Solar Corona
- Coronal Quasi-periodic Fast-mode Propagating Wave Trains
- Detection of flare multi-periodic pulsations in mid-ultraviolet Balmer continuum, Ly-alpha, hard X-ray, and radio emissions simultaneously
- Three-dimensional Propagation of the Global EUV Wave associated with a solar eruption on 2021 October 28
- Preflare very long-periodic pulsations observed in Halpha emission before the onset of a solar flare
- Homologous Accelerated Electron Beams, Quasi-periodic fast-propagating Wave and CME Observed in one Fan-spine Jet
- CME-Driven and Flare-Ignited Fast Magnetosonic Waves Successively Detected in a Solar Eruption
- Observations of a quasi-periodic pulsation in the coronal loop and microwave flux during a solar preflare phase
- Total reflection of a flare-driven quasi-periodic EUV wave train at a coronal hole boundary
- Resolved magnetohydrodynamic wave lensing in the solar corona
- Observations of a Flare-ignited broad Quasi-periodic Fast-propagating wave train
- White-light QFP Wave Train and the Associated Failed Breakout Eruption
- Exploring the Nature of EUV Waves in a Radiative Magnetohydrodynamic Simulation
- Cross-loop propagation of a quasi-periodic extreme-ultraviolet wave train triggered by successive stretching of magnetic field structures during a solar eruption
- Prominence Oscillations activated by an EUV wave
- Extreme-Ultraviolet Wave and Accompanying Loop Oscillations
- An extreme ultraviolet wave associated with the possible expansion of sheared arcades