Laboratory experiments simulating many of the dynamical features of solar coronal loops have been carried out. These experiments manifest collimation, kinking, jet flows, and S-shapes. Diagnostics include high-speed photography and x-ray detectors. Two loops having opposite or the same magnetic helicity polarities have been merged and it is found that counter-helicity merging provides much greater x-ray emission. A non-MHD particle orbit instability has been discovered whereby ions going in the opposite direction of the current flow direction can be ejected from a magnetic flux tube
The last few years have seen a marked increase in the sophistication of models of the solar corona. ...
Prominences in the solar corona are a hundredfold cooler and denser than their surroundings, with a ...
Context. Observations of post-flare transversal coronal loop oscillations by TRACE have given us an ...
Prominence condensation and support, the dynamics of coronal loops, and streamer structure and disco...
Laboratory plasma configurations have been developed which simulate solar coronal loops and astrophy...
A comprehensive overview of two decades of Caltech experiments relevant to solar corona physics is p...
Two of the most widely observed and striking features of the Suns magnetic field are coronal loops, ...
Solar coronal observations have shown that the corona has a highly complex structure which presumabl...
It is widely accepted that solar flares and CoronalMass Ejections (CMEs) are magnetically dominated ...
In this thesis I study the filamentation and dynamics in solar coronal loops by numerical models tha...
Spheromak technology is exploited to create laboratory simulations of solar prominence eruptions. It...
Coronal jets occur frequently on the Sun, and may contribute significantly to the solar wind. With t...
The primary objective of this research program is to improve our understanding of the dynamics and e...
Current information is presented on coronal magnetic fields as they bear on problems of the solar wi...
It is well established that sunspots and active regions are formed by the emergence of magnetic flux...
The last few years have seen a marked increase in the sophistication of models of the solar corona. ...
Prominences in the solar corona are a hundredfold cooler and denser than their surroundings, with a ...
Context. Observations of post-flare transversal coronal loop oscillations by TRACE have given us an ...
Prominence condensation and support, the dynamics of coronal loops, and streamer structure and disco...
Laboratory plasma configurations have been developed which simulate solar coronal loops and astrophy...
A comprehensive overview of two decades of Caltech experiments relevant to solar corona physics is p...
Two of the most widely observed and striking features of the Suns magnetic field are coronal loops, ...
Solar coronal observations have shown that the corona has a highly complex structure which presumabl...
It is widely accepted that solar flares and CoronalMass Ejections (CMEs) are magnetically dominated ...
In this thesis I study the filamentation and dynamics in solar coronal loops by numerical models tha...
Spheromak technology is exploited to create laboratory simulations of solar prominence eruptions. It...
Coronal jets occur frequently on the Sun, and may contribute significantly to the solar wind. With t...
The primary objective of this research program is to improve our understanding of the dynamics and e...
Current information is presented on coronal magnetic fields as they bear on problems of the solar wi...
It is well established that sunspots and active regions are formed by the emergence of magnetic flux...
The last few years have seen a marked increase in the sophistication of models of the solar corona. ...
Prominences in the solar corona are a hundredfold cooler and denser than their surroundings, with a ...
Context. Observations of post-flare transversal coronal loop oscillations by TRACE have given us an ...