Energetic trapped particles are shown to have a destabilizing effect on the internal kink mode in tokamaks. The plasma pressure threshold for the mode is lowered by the particles. The growth rate is near the ideal magnetohydrodynamic value, but the frequency is comparable to the trapped particle precission frequency. A model for the instability cycle gives stability properties, associated particle losses, and neutron emissivity consistent with the fishbone events observed in PDX
The issues of linear stability of low frequency perturbative and nonperturbative modes in advanced t...
Fishbone instability excited by the supra-thermal circulating electrons in tokamaks is investigated....
Kinetic-magnetohydrodynamic hybrid simulations were performed to investigate the linear growth and t...
The destabilization of ideal internal kink modes by trapped fast particles in tokamak plasmas with a...
The energetic particle driven internal kink mode is investigated in this paper for q(0) > 1 tokam...
The effects of thermal trapped particles on the n = 1 internal kink mode are studied using drift kin...
The destabilization of double kink modes by the circulating energetic ions in tokamaks with the plas...
A stability analysis for the resistive wall mode is studied in the presence of trapped energetic par...
Global hybrid simulations of energetic particle effects on the n=1 internal kink mode have been carr...
New experimental observations are reported on the structure and dynamics of short-lived periodic (1,...
Recent experiments involving high power radio-frequency heating of a tokamak plasma show strong supp...
Understanding the physics of energetic particles (EP) is crucial for the burning plasmas in next gen...
The internal-kink mode, combined with neutral-beam heating and beam losses, appears to be responsibl...
An energetic-particle (EP)-driven off-axis-fishbone-like mode (OFM) often triggers a resistive wall ...
An energetic-particle (EP)-driven “off-axis-fishbone-like mode (OFM)” often triggers a resistive wal...
The issues of linear stability of low frequency perturbative and nonperturbative modes in advanced t...
Fishbone instability excited by the supra-thermal circulating electrons in tokamaks is investigated....
Kinetic-magnetohydrodynamic hybrid simulations were performed to investigate the linear growth and t...
The destabilization of ideal internal kink modes by trapped fast particles in tokamak plasmas with a...
The energetic particle driven internal kink mode is investigated in this paper for q(0) > 1 tokam...
The effects of thermal trapped particles on the n = 1 internal kink mode are studied using drift kin...
The destabilization of double kink modes by the circulating energetic ions in tokamaks with the plas...
A stability analysis for the resistive wall mode is studied in the presence of trapped energetic par...
Global hybrid simulations of energetic particle effects on the n=1 internal kink mode have been carr...
New experimental observations are reported on the structure and dynamics of short-lived periodic (1,...
Recent experiments involving high power radio-frequency heating of a tokamak plasma show strong supp...
Understanding the physics of energetic particles (EP) is crucial for the burning plasmas in next gen...
The internal-kink mode, combined with neutral-beam heating and beam losses, appears to be responsibl...
An energetic-particle (EP)-driven off-axis-fishbone-like mode (OFM) often triggers a resistive wall ...
An energetic-particle (EP)-driven “off-axis-fishbone-like mode (OFM)” often triggers a resistive wal...
The issues of linear stability of low frequency perturbative and nonperturbative modes in advanced t...
Fishbone instability excited by the supra-thermal circulating electrons in tokamaks is investigated....
Kinetic-magnetohydrodynamic hybrid simulations were performed to investigate the linear growth and t...