Experimental evidence supporting the theory of hot tail runaway electron (RE) generation has been identified in TEXTOR disruptions. With higher temperature, more REs are generated during the thermal quench. Increasing the RE generation by increasing the temperature, an obvious RE plateau is observed even with low toroidal magnetic field (1.7 T). These results explain the previously found electron density threshold for RE generation
To study runaway electron generation in disruptions, we have extended the three-dimensional (3D) (2D...
Runaway electrons generated during ITER disruptions are of concern for the integrity of the plasma f...
Experimental observations show that there is a magnetic field threshold for runaway electron generat...
A systematic study of disruption-generated runaway electrons has been performed in the J-TEXT tokama...
The hot-tail (H-T) effect in disruption of impurity injections is considered. The contribution of th...
The hot-tail (H-T) effect in disruption of impurity injections is considered. The contribution of th...
Hot tail runaway electron generation in tokamak disruptions is caused by incomplete thermal-ization ...
Hot tail runaway electron generation is caused by incomplete thermalization of the electron velocity...
An experimental study of the generation of runaway electrons in TEXTOR has been performed. From the ...
An experimental study of the generation of runaway electrons in TEXTOR has been performed. From the ...
The generation of runaway electrons in the international fusion experiment ITER disruptions can lead...
To study runaway electron generation in disruptions, we have extended the three-dimensional (3D) (2D...
Experimental observations show that there is a magnetic field threshold for runaway electrongenerati...
Runaway electrons generated during ITER disruptions are of concern for the integrity of the plasma f...
Runaway electrons generated during ITER disruptions are of concern for the integrity of the plasma f...
To study runaway electron generation in disruptions, we have extended the three-dimensional (3D) (2D...
Runaway electrons generated during ITER disruptions are of concern for the integrity of the plasma f...
Experimental observations show that there is a magnetic field threshold for runaway electron generat...
A systematic study of disruption-generated runaway electrons has been performed in the J-TEXT tokama...
The hot-tail (H-T) effect in disruption of impurity injections is considered. The contribution of th...
The hot-tail (H-T) effect in disruption of impurity injections is considered. The contribution of th...
Hot tail runaway electron generation in tokamak disruptions is caused by incomplete thermal-ization ...
Hot tail runaway electron generation is caused by incomplete thermalization of the electron velocity...
An experimental study of the generation of runaway electrons in TEXTOR has been performed. From the ...
An experimental study of the generation of runaway electrons in TEXTOR has been performed. From the ...
The generation of runaway electrons in the international fusion experiment ITER disruptions can lead...
To study runaway electron generation in disruptions, we have extended the three-dimensional (3D) (2D...
Experimental observations show that there is a magnetic field threshold for runaway electrongenerati...
Runaway electrons generated during ITER disruptions are of concern for the integrity of the plasma f...
Runaway electrons generated during ITER disruptions are of concern for the integrity of the plasma f...
To study runaway electron generation in disruptions, we have extended the three-dimensional (3D) (2D...
Runaway electrons generated during ITER disruptions are of concern for the integrity of the plasma f...
Experimental observations show that there is a magnetic field threshold for runaway electron generat...