Experimental observations show that there is a magnetic field threshold for runaway electron generation in tokamak disruptions. In this work, two possible reasons for this threshold are studied. The first possible explanation for these observations is that the runaway beam excites whistler waves that scatter the electrons in velocity space prevents the beam from growing. The growth rates of the most unstable whistler waves are inversely proportional to the magnetic field strength. Taking into account the collisional and convective damping of the waves it is possible to derive a magnetic field threshold below which no runaways are expected. The second possible explanation is the magnetic field dependence of the criterion for substantial runa...
Hot tail runaway electron generation is caused by incomplete thermalization of the electron velocity...
Runaway particles can be produced in plasmas with large electric fields. Here, we address the possib...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...
Experimental observations show that there is a magnetic field threshold for runaway electrongenerati...
Experimental observations show that there is a magnetic field threshold for runaway electron generat...
Experimental observations on large tokamaks show that the number of runaway electrons produced in di...
Experimental observations on large tokamaks show that the number of runaway electrons produced in di...
A test particle description of the runaway dynamics is used to analyze some of the main mechanisms l...
The dynamics of runaway electrons in tokamaks are investigated theoretically by taking into account ...
Runaway electrons can be generated as a consequence of the rapid thermal quench of the plasma in a t...
A systematic study of disruption-generated runaway electrons has been performed in the J-TEXT tokama...
Disruptions are a major operational concern for next generation tokamaks, including ITER. They may g...
Runaway electrons can be generated as a consequence of the rapid thermal quench of the plasma in a t...
Hot tail runaway electron generation in tokamak disruptions is caused by incomplete thermal-ization ...
1. Introduction. In low-density plasmas at high toroidal electric fields, like in the ISTTOK tokamak...
Hot tail runaway electron generation is caused by incomplete thermalization of the electron velocity...
Runaway particles can be produced in plasmas with large electric fields. Here, we address the possib...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...
Experimental observations show that there is a magnetic field threshold for runaway electrongenerati...
Experimental observations show that there is a magnetic field threshold for runaway electron generat...
Experimental observations on large tokamaks show that the number of runaway electrons produced in di...
Experimental observations on large tokamaks show that the number of runaway electrons produced in di...
A test particle description of the runaway dynamics is used to analyze some of the main mechanisms l...
The dynamics of runaway electrons in tokamaks are investigated theoretically by taking into account ...
Runaway electrons can be generated as a consequence of the rapid thermal quench of the plasma in a t...
A systematic study of disruption-generated runaway electrons has been performed in the J-TEXT tokama...
Disruptions are a major operational concern for next generation tokamaks, including ITER. They may g...
Runaway electrons can be generated as a consequence of the rapid thermal quench of the plasma in a t...
Hot tail runaway electron generation in tokamak disruptions is caused by incomplete thermal-ization ...
1. Introduction. In low-density plasmas at high toroidal electric fields, like in the ISTTOK tokamak...
Hot tail runaway electron generation is caused by incomplete thermalization of the electron velocity...
Runaway particles can be produced in plasmas with large electric fields. Here, we address the possib...
Équipe 107 : Physique des plasmas chaudsInternational audienceDisruptions are a major operational co...