We analyze the dynamics of fast electrons in plasmas containing partially ionized impurity atoms, where the screening effect of bound electrons must be included. We derive analytical expressions for the deflection and slowing-down frequencies, and show that they are increased significantly compared to the results obtained with complete screening, already at sub-relativistic electron energies. Furthermore, we show that the modifications to the deflection and slowing down frequencies are of equal importance in describing the runaway current evolution. Our results greatly affect fast-electron dynamics and have important implications, e.g. for the efficacy of mitigation strategies for runaway electrons in tokamak devices, and energy loss during...
We study the effect of screening by bound electrons in low energy nuclear reactions. We use molecula...
In high-current tokamak devices such as ITER, a runaway avalanche can cause a large amplification of...
We study the effect of screening by bound electrons in low energy nuclear reactions. We use molecula...
We analyze the dynamics of fast electrons in plasmas containing partially ionized impurity atoms, wh...
Runaway electrons constitute a significant threat to tokamak devices. Their mitigation by heavy-impu...
International audienceThe dynamics of fast electrons driven inductively or by resonant interactions ...
One of the essential results of kinetic plasma physics is the runaway phenomenon: sufficiently large...
Accurate modelling of the interaction between fast electrons and partially ionized atoms is importan...
Fast electrons in a plasma experience a friction force that decreases with increasing particle speed...
We derive a formula for the effective critical electric field for runaway generation and decay that ...
The phenomenon of runaway occurs in plasmas in the presence of a strong electric field, which overco...
The hot-tail (H-T) effect in disruption of impurity injections is considered. The contribution of th...
Runaway electrons are generated in a magnetized plasma when the parallel electric field exceeds a cr...
An essential result of kinetic plasma physics is the runaway phenomenon, whereby a fraction of an el...
The effects of fast electron confinement and plasma temperature on the lower hybrid current ramp-up ...
We study the effect of screening by bound electrons in low energy nuclear reactions. We use molecula...
In high-current tokamak devices such as ITER, a runaway avalanche can cause a large amplification of...
We study the effect of screening by bound electrons in low energy nuclear reactions. We use molecula...
We analyze the dynamics of fast electrons in plasmas containing partially ionized impurity atoms, wh...
Runaway electrons constitute a significant threat to tokamak devices. Their mitigation by heavy-impu...
International audienceThe dynamics of fast electrons driven inductively or by resonant interactions ...
One of the essential results of kinetic plasma physics is the runaway phenomenon: sufficiently large...
Accurate modelling of the interaction between fast electrons and partially ionized atoms is importan...
Fast electrons in a plasma experience a friction force that decreases with increasing particle speed...
We derive a formula for the effective critical electric field for runaway generation and decay that ...
The phenomenon of runaway occurs in plasmas in the presence of a strong electric field, which overco...
The hot-tail (H-T) effect in disruption of impurity injections is considered. The contribution of th...
Runaway electrons are generated in a magnetized plasma when the parallel electric field exceeds a cr...
An essential result of kinetic plasma physics is the runaway phenomenon, whereby a fraction of an el...
The effects of fast electron confinement and plasma temperature on the lower hybrid current ramp-up ...
We study the effect of screening by bound electrons in low energy nuclear reactions. We use molecula...
In high-current tokamak devices such as ITER, a runaway avalanche can cause a large amplification of...
We study the effect of screening by bound electrons in low energy nuclear reactions. We use molecula...