The energetic particle driven internal kink mode is investigated in this paper for q(0) > 1 tokamak plasma with weak magnetic shear. With the effect of energetic particles, the m/n = 1/1 internal mode structure in tokamak plasma does not appear as a rigid step-function when safety factor passes through q = 1 rational surface. It is found that even when the rational surface is removed, the mode may be still unstable under the low magnetic shear condition if the energetic particle drive is strong enough; with the low shear region of safety factor profile widening, the mode becomes more unstable with its growth-rate increasing. Furthermore, we find that the existence of the q = 1 rational surface does not have a significant effect on the st...
A general introduction to ideal magnetohydrodynamic (MHD) stability of tokamak plasmas is given, usi...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
A general introduction to ideal magnetohydrodynamic (MHD) stability of tokamak plasmas is given, usi...
In this paper, we study the effect of safety factor profiles, particularly with a very weak magnetic...
The destabilization of ideal internal kink modes by trapped fast particles in tokamak plasmas with a...
Energetic trapped particles are shown to have a destabilizing effect on the internal kink mode in to...
In this paper, we analyze the modification of fast particles on the nonlinear radial displacement of...
An extensive numerical study has been carried out for internal modes with toroidal mode number unity...
A long-lasting (for hundreds of milliseconds) m/n = 1 energetic particle mode driven by trapped fast...
The effects of thermal trapped particles on the n = 1 internal kink mode are studied using drift kin...
Understanding the physics of energetic particles (EP) is crucial for the burning plasmas in next gen...
The energy principle of ideal magnetohydrodynamics (MHD) is used to study the ideal MHD stability of...
Nonlinear radial displacement modified by the kinetic effect of circulating fast ions is derived. It...
MasterParticle transport can directly affect the confinement performance. When the perturbation is p...
Alfvén instabilities excited by energetic ions are used as a means to reduce the central magnetic sh...
A general introduction to ideal magnetohydrodynamic (MHD) stability of tokamak plasmas is given, usi...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
A general introduction to ideal magnetohydrodynamic (MHD) stability of tokamak plasmas is given, usi...
In this paper, we study the effect of safety factor profiles, particularly with a very weak magnetic...
The destabilization of ideal internal kink modes by trapped fast particles in tokamak plasmas with a...
Energetic trapped particles are shown to have a destabilizing effect on the internal kink mode in to...
In this paper, we analyze the modification of fast particles on the nonlinear radial displacement of...
An extensive numerical study has been carried out for internal modes with toroidal mode number unity...
A long-lasting (for hundreds of milliseconds) m/n = 1 energetic particle mode driven by trapped fast...
The effects of thermal trapped particles on the n = 1 internal kink mode are studied using drift kin...
Understanding the physics of energetic particles (EP) is crucial for the burning plasmas in next gen...
The energy principle of ideal magnetohydrodynamics (MHD) is used to study the ideal MHD stability of...
Nonlinear radial displacement modified by the kinetic effect of circulating fast ions is derived. It...
MasterParticle transport can directly affect the confinement performance. When the perturbation is p...
Alfvén instabilities excited by energetic ions are used as a means to reduce the central magnetic sh...
A general introduction to ideal magnetohydrodynamic (MHD) stability of tokamak plasmas is given, usi...
The formation of internal transport barriers (ITBs) has been experimentally associated with the pres...
A general introduction to ideal magnetohydrodynamic (MHD) stability of tokamak plasmas is given, usi...