Observations and 3D MHD Modeling of a Confined Helical Jet Launched by a Filament Eruption
arXiv:1912.02133 · doi:10.3847/1538-4357/ab5d39
Abstract
We present a detailed analysis of a confined filament eruption and jet associated with a C1.5 class solar flare. Multi-wavelength observations from GONG and SDO reveal the filament forming over several days following the emergence and then partial cancellation of a minority polarity spot within a decaying bipolar active region. The emergence is also associated with the formation of a 3D null point separatrix that surrounds the minority polarity. The filament eruption occurs concurrent with brightenings adjacent to and below the filament, suggestive of breakout and flare reconnection, respectively. The erupting filament material becomes partially transferred into a strong outflow jet (~ 60 km/s) along coronal loops, becoming guided back towards the surface. Utilising high resolution H observations from SST/CRISP, we construct velocity maps of the outflows demonstrating their highly structured but broadly helical nature. We contrast the observations with a 3D MHD simulation of a breakout jet in a closed-field background and find close qualitative agreement. We conclude that the suggested model provides an intuitive mechanism for transferring twist/helicity in confined filament eruptions, thus validating the applicability of the breakout model not only to jets and coronal mass ejections but also to confined eruptions and flares.
Accepted for publication in ApJ. 21 pages, 14 figures and 6 animations which will be avaliable in the published version
References in corpus (10)
- Torus instability
- CRISP Spectropolarimetric Imaging of Penumbral Fine Structure
- Small-scale filament eruptions as the driver of solar coronal hole X-ray jets
- CRISPRED: A data pipeline for the CRISP imaging spectropolarimeter
- A Breakout Model for Solar Coronal Jets with Filaments
- Magnetic Flux Cancellation as the Trigger of Solar Quiet-Region Coronal Jets
- Three-Dimensional Simulations of Tearing and Intermittency in Coronal Jets
- Multiwavelength Study of Equatorial Coronal-Hole Jets
- Helical Kink Instability in a Confined Solar Eruption
- Why torus-unstable solar filaments experience failed eruption?
Cited by in corpus (12)
- The Magnetic Origin of Solar Campfires
- From Pseudostreamer Jets to CMEs: Observations of the Breakout Continuum
- Spectroscopic observations of a flare-related coronal jet
- Solar Orbiter and SDO Observations, and Bifrost MHD Simulations of Small-scale Coronal Jets
- Determining the dynamics and magnetic fields in He I 10830 Å during a solar filament eruption
- Another Look at Erupting Minifilaments at the Base of Solar X-Ray Polar Coronal "Standard" and "Blowout" Jets
- Genesis and Coronal-jet-generating Eruption of a Solar Minifilament Captured by IRIS Slit-raster Spectra
- Propagation of untwisting solar jets from the low-beta corona into the super-Alfvénic wind: Testing a solar origin scenario for switchbacks
- Fast degradation of the circular flare ribbon on 2014 August 24
- Synthesizing Sun-as-a-star flare spectra from high-resolution solar observations
- Velocities of an Erupting Filament
- Helmet streamer influence on the evolution of magnetic flux ropes