We present a detailed analysis of a confined filament eruption and jet associated with a C1.5 class solar flare. Multi-wavelength observations from the Global Oscillations Network Group and Solar Dynamics Observatory 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 concurrently 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 ...
We present observations and modeling of the magnetic field configuration, morphology, and dynamics o...
Solar coronal jets are magnetically channeled eruptions that occur in all types of solar environment...
How filaments form and erupt are topics about which solar researchers have wondered for more than a ...
We present a detailed analysis of a confined filament eruption and jet associated with a C1.5 class ...
Recent observations have revealed that many solar coronal jets involve the eruption of miniature ver...
Magnetically driven eruptions on the Sun, from stellar-scale coronal mass ejections to small-scale c...
Coronal jets are observed above minority polarity intrusions throughout the solar corona. Some of th...
Jets (transient/collimated plasma ejections) occur frequently throughout the solar corona and contri...
Small, impulsive jets commonly occur throughout the solar corona, but are especially visible in coro...
Transient collimated plasma ejections (jets) occur frequently throughout the solar corona, in active...
The magnetic breakout model, in which reconnection in the corona leads to destabilization of a filam...
Small, impulsive jets commonly occur throughout the solar corona, but are especially visible in coro...
Recent observations have revealed that many solar coronal jets involve the eruption of miniature ver...
We present observations and modeling of the magnetic field configuration, morphology, and dynamics o...
Small, impulsive jets commonly occur throughout the solar corona, but are especially visible in coro...
We present observations and modeling of the magnetic field configuration, morphology, and dynamics o...
Solar coronal jets are magnetically channeled eruptions that occur in all types of solar environment...
How filaments form and erupt are topics about which solar researchers have wondered for more than a ...
We present a detailed analysis of a confined filament eruption and jet associated with a C1.5 class ...
Recent observations have revealed that many solar coronal jets involve the eruption of miniature ver...
Magnetically driven eruptions on the Sun, from stellar-scale coronal mass ejections to small-scale c...
Coronal jets are observed above minority polarity intrusions throughout the solar corona. Some of th...
Jets (transient/collimated plasma ejections) occur frequently throughout the solar corona and contri...
Small, impulsive jets commonly occur throughout the solar corona, but are especially visible in coro...
Transient collimated plasma ejections (jets) occur frequently throughout the solar corona, in active...
The magnetic breakout model, in which reconnection in the corona leads to destabilization of a filam...
Small, impulsive jets commonly occur throughout the solar corona, but are especially visible in coro...
Recent observations have revealed that many solar coronal jets involve the eruption of miniature ver...
We present observations and modeling of the magnetic field configuration, morphology, and dynamics o...
Small, impulsive jets commonly occur throughout the solar corona, but are especially visible in coro...
We present observations and modeling of the magnetic field configuration, morphology, and dynamics o...
Solar coronal jets are magnetically channeled eruptions that occur in all types of solar environment...
How filaments form and erupt are topics about which solar researchers have wondered for more than a ...