The interaction between fast-ions and edge localized modes (ELMs) is investigated by means of fast-ion loss detector measurements. Fast-ion losses are increased during ELMs exhibiting a 3D filamentary-like behaviour. An accelerated beam ion population has been observed during ELMs in a tokamak for the first time. Tomographic inversion of the measured fast-ion losses reveal multiple velocity-space structures. Attending to the experimental observations, an acceleration mechanism is proposed based on a resonant interaction between the beam ions and parallel electric fields emerging during the ELM crash. The key experimental observations can be qualitatively reproduced by full-orbit following simulations of fast-ions in the presence of the ELM ...
The effect of ASDEX Upgrade (AUG) edge localized mode (ELM)-mitigation coils on fast ion wall loads ...
In ASDEX Upgrade, the propagation of cold pulses induced by type-I edge localized modes (ELMs) is st...
A fast-ion D-alpha (FIDA) diagnostic has been developed for the fully tungsten coated ASDEX Upgrade...
The interaction between fast-ions and edge localized modes (ELMs) is investigated by means of fast-i...
The acceleration of beam ions during edge localized modes (ELMs) in a tokamak is observed for the fi...
Observations of enhanced fast-ion losses during edge localized modes (ELMs) have been reported in th...
The impact of edge localized modes (ELMs) and externally applied resonant and non-resonant magnetic ...
The confinement of suprathermal ions in magnetically confined fusion plasmas is essential to ensure ...
In recent experiments at the ASDEX Upgrade tokamak the existence of an Edge Resonant Transport Layer...
Magnetic confinement of plasma inside a tokamak is presently the most promising form of controlled f...
A poloidal array of scintillator-based Fast-Ion Loss Detectors (FILDs) has been installed in the ASD...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
The dynamic behaviour of the ion and electron energy, particle and momentum transport measured durin...
The effect of ASDEX Upgrade (AUG) edge localized mode (ELM)-mitigation coils on fast ion wall loads ...
In ASDEX Upgrade, the propagation of cold pulses induced by type-I edge localized modes (ELMs) is st...
A fast-ion D-alpha (FIDA) diagnostic has been developed for the fully tungsten coated ASDEX Upgrade...
The interaction between fast-ions and edge localized modes (ELMs) is investigated by means of fast-i...
The acceleration of beam ions during edge localized modes (ELMs) in a tokamak is observed for the fi...
Observations of enhanced fast-ion losses during edge localized modes (ELMs) have been reported in th...
The impact of edge localized modes (ELMs) and externally applied resonant and non-resonant magnetic ...
The confinement of suprathermal ions in magnetically confined fusion plasmas is essential to ensure ...
In recent experiments at the ASDEX Upgrade tokamak the existence of an Edge Resonant Transport Layer...
Magnetic confinement of plasma inside a tokamak is presently the most promising form of controlled f...
A poloidal array of scintillator-based Fast-Ion Loss Detectors (FILDs) has been installed in the ASD...
In the early twentieth century, scientists found out what process keeps the Sun burning: nuclear fus...
The dynamic behaviour of the ion and electron energy, particle and momentum transport measured durin...
The effect of ASDEX Upgrade (AUG) edge localized mode (ELM)-mitigation coils on fast ion wall loads ...
In ASDEX Upgrade, the propagation of cold pulses induced by type-I edge localized modes (ELMs) is st...
A fast-ion D-alpha (FIDA) diagnostic has been developed for the fully tungsten coated ASDEX Upgrade...