Kinematics and helicity evolution of a loop-like eruptive prominence
arXiv:1202.4541 · doi:10.1051/0004-6361/201118588
Abstract
We aim at investigating the morphology, kinematic and helicity evolution of a loop-like prominence during its eruption. We use multi-instrument observations from AIA/SDO, EUVI/STEREO and LASCO/SoHO. The kinematic, morphological, geometrical, and helicity evolution of a loop-like eruptive prominence are studied in the context of the magnetic flux rope model of solar prominences. The prominence eruption evolved as a height expanding twisted loop with both legs anchored in the chromosphere of a plage area. The eruption process consists of a prominence activation, acceleration, and a phase of constant velocity. The prominence body was composed of left-hand (counter-clockwise) twisted threads around the main prominence axis. The twist during the eruption was estimated at 6pi (3 turns). The prominence reached a maximum height of 526 Mm before contracting to its primary location and partially reformed in the same place two days after the eruption. This ejection, however, triggered a CME seen in LASCO C2. The prominence was located in the northern periphery of the CME magnetic field configuration and, therefore, the background magnetic field was asymmetric with respect to the filament position. The physical conditions of the falling plasma blobs were analysed with respect to the prominence kinematics. The same sign of the prominence body twist and writhe, as well as the amount of twisting above the critical value of 2pi after the activation phase indicate that possibly conditions for kink instability were present. No signature of magnetic reconnection was observed anywhere in the prominence body and its surroundings. The filament/prominence descent following the eruption and its partial reformation at the same place two days later suggest a confined type of eruption. The asymmetric background magnetic field possibly played an important role in the failed eruption.
9 pages, 8 figures, in press in A&A
References in corpus (4)
- Torus instability
- Physics of Solar Prominences: I - Spectral Diagnostics and Non-LTE Modelling
- Observations and modeling of the early acceleration phase of erupting filaments involved in coronal mass ejections
- A Time Series of Filament Eruptions Observed by Three Eyes from Space: From Failed to Successful Eruptions
Cited by in corpus (21)
- From coronal observations to MHD simulations, the building blocks for 3D models of solar flares
- Solar filament eruptions and their physical role in triggering Coronal Mass Ejections
- Prominence and Filament Eruptions Observed by the Solar Dynamics Observatory: Statistical Properties, Kinematics, and Online Catalog
- Evolution of Flare Ribbons, Electric Currents and Quasi-separatrix Layers During an X-class Flare
- Slow Rise and Partial Eruption of a Double-Decker Filament. II. Modeling by a Double Flux Rope Equilibrium
- Helical Kink Instability in a Confined Solar Eruption
- Homologous Flux Ropes Observed by SDO/AIA
- Formation of Compound Flux Rope by The Merging of Two Filament Channels, Associated Dynamics and its Stability
- Non-equilibrium Flux Rope Formation by Confined Flares Preceding a Solar Coronal Mass Ejection
- Peculiar Stationary EUV Wave Fronts in the eruption on 2011 May 11
- Rotating Motions and Modeling of the Erupting Solar Polar Crown Prominence on 2010 December 6
- First High-resolution Spectroscopic Observations of an Erupting Prominence Within a Coronal Mass Ejection by the Interface Region Imaging Spectrograph (IRIS)
- Eruptions from quiet Sun coronal bright points. I. Observations
- On magnetic reconnection and flux rope topology in solar flux emergence
- A Model for Confined Solar Eruptions Including External Reconnection
- Eruptions from coronal bright points: A spectroscopic view by IRIS of a mini-filament eruption, QSL reconnection, and reconnection-driven outflows
- High-resolution Observations of a Flux Rope with the Interface Region Imaging Spectrograph
- Helical Twisting Number and Braiding Linkage Number of Solar Coronal Loops
- Multi-wavelength Observation of a Failed Eruption from a Helical Kink-unstable Prominence
- Analysis of a long-duration AR throughout five solar rotations: Magnetic properties and ejective events
- Velocities of an Erupting Filament