A simple model for the instrument function of scintillator-based fast-ion loss detectors (FILD) has been developed which accounts for the orbit trajectories in the 3D detector geometry and for the scintillator response. It allows us to produce synthetic FILD signals for a direct comparison between experiments and simulations. The model uses a weight function formalism to relate the velocity-space distribution of fast-ion losses reaching the detector pinhole to the scintillator pattern obtained experimentally, which can be understood as a distortion of the velocity-space distribution due to the finite resolution of the system. The tool allows us to recover the undistorted velocity-space distribution of the absolute flux of fast-ion losses re...
All the information about a plasma species is encoded in its distribution function. While it would b...
In magnetic confinement devices, it is required that fast ions, such as heating ions and alpha par...
We compute tomographies of 2D fast-ion velocity distribution functions from synthetic collective Tho...
The confinement of suprathermal ions in magnetically confined fusion plasmas is essential to ensure ...
Fast-ion Dα (FIDA) and collective Thomson scattering (CTS) diagnostics provide indirect measurements...
A Fast Ion Loss Detector (FILD) was designed, assembled, installed and commissioned for TCV. This is...
A new scintillator-based fast-ion loss detector (FILD) installed near the outer midplane of the plas...
A fast ion loss detector (FILD) can obtain the information on their gyro radius and pitch angle of l...
A new reciprocating scintillator based fast-ion loss detector has been installed a few centimeters a...
A fast ion loss detector (FILD) can obtain the information on their gyro radius and pitch angle of l...
The JET FILD is a scintillator-based Fast-ion Loss Detector optimized to measure fusion-born alpha-p...
A new scintillator-based fast-ion loss detector (FILD) installed near the outer midplane of the plas...
The orbits of lost ions can be calculated from the information obtained by a fast ion loss detector ...
A poloidal array of scintillator-based Fast-Ion Loss Detectors (FILDs) has been installed in the ASD...
We present the first measurement of a local fast-ion 2D velocity distribution function f(ν∥, ν⊥). To...
All the information about a plasma species is encoded in its distribution function. While it would b...
In magnetic confinement devices, it is required that fast ions, such as heating ions and alpha par...
We compute tomographies of 2D fast-ion velocity distribution functions from synthetic collective Tho...
The confinement of suprathermal ions in magnetically confined fusion plasmas is essential to ensure ...
Fast-ion Dα (FIDA) and collective Thomson scattering (CTS) diagnostics provide indirect measurements...
A Fast Ion Loss Detector (FILD) was designed, assembled, installed and commissioned for TCV. This is...
A new scintillator-based fast-ion loss detector (FILD) installed near the outer midplane of the plas...
A fast ion loss detector (FILD) can obtain the information on their gyro radius and pitch angle of l...
A new reciprocating scintillator based fast-ion loss detector has been installed a few centimeters a...
A fast ion loss detector (FILD) can obtain the information on their gyro radius and pitch angle of l...
The JET FILD is a scintillator-based Fast-ion Loss Detector optimized to measure fusion-born alpha-p...
A new scintillator-based fast-ion loss detector (FILD) installed near the outer midplane of the plas...
The orbits of lost ions can be calculated from the information obtained by a fast ion loss detector ...
A poloidal array of scintillator-based Fast-Ion Loss Detectors (FILDs) has been installed in the ASD...
We present the first measurement of a local fast-ion 2D velocity distribution function f(ν∥, ν⊥). To...
All the information about a plasma species is encoded in its distribution function. While it would b...
In magnetic confinement devices, it is required that fast ions, such as heating ions and alpha par...
We compute tomographies of 2D fast-ion velocity distribution functions from synthetic collective Tho...