The influence of plasma geometry on the linear stability of electrostatic ion-temperature-gradient driven drift modes (ITG modes) is investigated. An advanced fluid model is used for the ions together with Boltzmann distributed electrons. The derived eigenvalue equation is solved numerically. A comparison is made between an H – 1NF [Fusion Technol. 17, 123 (1990)] like stellarator equilibrium, a numerical tokamak equilibrium and the analytical s - alpha equilibrium. The numerical and the analytical tokamak are found to be in good agreement in the low inverse aspect ratio limit. The growth rates of the tokamak and stellarator are comparable whereas the modulus of the real frequency is substantially larger in the stellarator. The threshold i...
The concept of energy production through the fusion of two light nuclei has been studied since the 1...
The gyrokinetic turbulence code GS2 was used to investigate the effects of plasma β on linear, colli...
We consider a time-dependent linear global electrostatic toroidal fluid ion-temperature gradient (IT...
There is a general consensus that drift waves are responsible for a large amount of transport in fus...
One of the main concerns in fusion research is to understand the anomalously high transport in magne...
The anomalous particle and heat transport observed in magnetically confined plasmas is generally att...
In this paper, we demonstrate the importance of the details of the equilibria on the stability of el...
The anomalous particle and heat transport observed in magnetically confined plasmas is generally att...
The linear stability of dissipative drift electrostatic modes in tokamak plasmas is studied numerica...
One of the main concerns in fusion research is to understand the anomalously high transport in magne...
OAK-B135 The gyrokinetic equations predict that various drift type waves or modes can be unstable in...
A major aim in fusion research is to understand, predict and control confined plasma instability in ...
An analytical model for zonal flow generation by toroidal ion-temperature-gradient (ITG) modes, incl...
A major aim in fusion research is to understand, predict and control confined plasma instability in ...
The study of stability of electrostatic drift modes is a key topic in fusion research. It is common ...
The concept of energy production through the fusion of two light nuclei has been studied since the 1...
The gyrokinetic turbulence code GS2 was used to investigate the effects of plasma β on linear, colli...
We consider a time-dependent linear global electrostatic toroidal fluid ion-temperature gradient (IT...
There is a general consensus that drift waves are responsible for a large amount of transport in fus...
One of the main concerns in fusion research is to understand the anomalously high transport in magne...
The anomalous particle and heat transport observed in magnetically confined plasmas is generally att...
In this paper, we demonstrate the importance of the details of the equilibria on the stability of el...
The anomalous particle and heat transport observed in magnetically confined plasmas is generally att...
The linear stability of dissipative drift electrostatic modes in tokamak plasmas is studied numerica...
One of the main concerns in fusion research is to understand the anomalously high transport in magne...
OAK-B135 The gyrokinetic equations predict that various drift type waves or modes can be unstable in...
A major aim in fusion research is to understand, predict and control confined plasma instability in ...
An analytical model for zonal flow generation by toroidal ion-temperature-gradient (ITG) modes, incl...
A major aim in fusion research is to understand, predict and control confined plasma instability in ...
The study of stability of electrostatic drift modes is a key topic in fusion research. It is common ...
The concept of energy production through the fusion of two light nuclei has been studied since the 1...
The gyrokinetic turbulence code GS2 was used to investigate the effects of plasma β on linear, colli...
We consider a time-dependent linear global electrostatic toroidal fluid ion-temperature gradient (IT...