Before the 2015/2016 experimental campaign, the ASDEX Upgrade (AUG) 2-strap ICRF antennas with tungsten-coated limiters were replaced by 3-strap antennas. The main goal of the 3-strap launcher was to reduce the release of tungsten (W) in order to improve the ICRF operation, which appeared to be troublesome after the all-W wall installation [1]. In this paper, we analyse the behaviour of the 3-strap antenna with the help of TOPICA code [2], a numerical tool able to take into account a realistic antenna geometry and an accurate plasma description. By loading an experimental plasma profile from the AUG campaign, we characterize the antenna both in terms of input parameters and of radiated fields. In particular, we compare TOPICA results obtain...
During operation of the ASDEX Upgrade (AUG) ion cyclotron radio frequency (ICRF) system, Tungsten (W...
The 3-strap antennas in ASDEX Upgrade allow ICRF operation with low tungsten (W) content in the conf...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...
Before the 2015/2016 experimental campaign, the ASDEX Upgrade (AUG) 2-strap ICRF antennas with tungs...
The design of an Ion Cyclotron (IC) launcher is essentially driven by its coupling properties and it...
Accurate and efficient simulation tools are necessary to optimize the ICRF antenna design for a set ...
Abstract. Nuclear fusion in magnetic confinement devices is one of the most challenging application ...
The response of the local RF current measured at limiters of 3-strap ICRF antenna to variations of p...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...
TOPICA (TOrino Polytechnic Ion Cyclotron Antenna) code is a numerical suite aimed at the performance...
Nuclear fusion in magnetic confinement devices is one of the most challenging application fields for...
A comparison of the ASDEX Upgrade 3-strap ICRF antenna data with the linear electro-magnetic TOPICA ...
A comparison of the ASDEX Upgrade 3-strap ICRF antenna data with the linear electromagnetic TOPICA c...
A substantial effort has been devoted in recent years to the optimization of the ITER Ion Cyclotron ...
During operation of the ASDEX Upgrade (AUG) ion cyclotron radio frequency (ICRF) system, Tungsten (W...
The 3-strap antennas in ASDEX Upgrade allow ICRF operation with low tungsten (W) content in the conf...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...
Before the 2015/2016 experimental campaign, the ASDEX Upgrade (AUG) 2-strap ICRF antennas with tungs...
The design of an Ion Cyclotron (IC) launcher is essentially driven by its coupling properties and it...
Accurate and efficient simulation tools are necessary to optimize the ICRF antenna design for a set ...
Abstract. Nuclear fusion in magnetic confinement devices is one of the most challenging application ...
The response of the local RF current measured at limiters of 3-strap ICRF antenna to variations of p...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...
TOPICA (TOrino Polytechnic Ion Cyclotron Antenna) code is a numerical suite aimed at the performance...
Nuclear fusion in magnetic confinement devices is one of the most challenging application fields for...
A comparison of the ASDEX Upgrade 3-strap ICRF antenna data with the linear electro-magnetic TOPICA ...
A comparison of the ASDEX Upgrade 3-strap ICRF antenna data with the linear electromagnetic TOPICA c...
A substantial effort has been devoted in recent years to the optimization of the ITER Ion Cyclotron ...
During operation of the ASDEX Upgrade (AUG) ion cyclotron radio frequency (ICRF) system, Tungsten (W...
The 3-strap antennas in ASDEX Upgrade allow ICRF operation with low tungsten (W) content in the conf...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...