Ion Cyclotron Resonance Heating is one of the most important auxiliary heating systems in most plasma confinement experiments. Because of this, the need for very accurate design of ion cyclotron (IC) launchers has dramatically grown in recent years. Furthermore, a reliable simulation tool is a crucial request in the successful design of these antennas, since full testing is impossible outside experiments. One of the most advanced and validated simulation codes is TOPICA, which offers the possibility to handle the geometrical level of detail of a real antenna in front of an accurately described plasma scenario. Adopting this essential tool made possible to reach a refined design of ion cyclotron radio frequency antenna for the FAST (Fusion A...
The design of an Ion Cyclotron (IC) launcher is essentially driven by its coupling properties and it...
The final goal of this work is to set a list of rules to design a new Ion Cyclotron (IC) launcher wi...
The successful design of an ion cyclotron antenna mainly relies on the capability of accurately pred...
This paper documents the complete analysis and optimization of the ITER ion cyclotron range of frequ...
The demand for a predictive tool to help in designing ion-cyclotron radio frequency (ICRF) antenna s...
The design of an Ion Cyclotron (IC) launcher is not only driven by its coupling properties, but also...
In recent years electromagnetic (RF) plasma generation and acceleration concepts for plasma‐based pr...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...
The design of an Ion Cyclotron (IC) launcher is not only driven by its coupling properties, but also...
A substantial effort has been devoted in recent years to the optimization of the ITER Ion Cyclotron ...
Multi-megawatt Ion Cyclotron Range of Frequencies (ICRF) heating is routinely used in the JET tokama...
Ion-Cyclotron Resonance Heating (ICRH) and Lower-Hybrid (LH)Resonance Heating are key parts of all p...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...
The design of an Ion Cyclotron (IC) launcher is essentially driven by its coupling properties and it...
The final goal of this work is to set a list of rules to design a new Ion Cyclotron (IC) launcher wi...
The successful design of an ion cyclotron antenna mainly relies on the capability of accurately pred...
This paper documents the complete analysis and optimization of the ITER ion cyclotron range of frequ...
The demand for a predictive tool to help in designing ion-cyclotron radio frequency (ICRF) antenna s...
The design of an Ion Cyclotron (IC) launcher is not only driven by its coupling properties, but also...
In recent years electromagnetic (RF) plasma generation and acceleration concepts for plasma‐based pr...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...
The design of an Ion Cyclotron (IC) launcher is not only driven by its coupling properties, but also...
A substantial effort has been devoted in recent years to the optimization of the ITER Ion Cyclotron ...
Multi-megawatt Ion Cyclotron Range of Frequencies (ICRF) heating is routinely used in the JET tokama...
Ion-Cyclotron Resonance Heating (ICRH) and Lower-Hybrid (LH)Resonance Heating are key parts of all p...
TOPICA (Torino Polytechnic Ion Cyclotron Antenna) code is an innovative tool for the 3D/1D simulatio...
The design of an Ion Cyclotron (IC) launcher is essentially driven by its coupling properties and it...
The final goal of this work is to set a list of rules to design a new Ion Cyclotron (IC) launcher wi...
The successful design of an ion cyclotron antenna mainly relies on the capability of accurately pred...