The electron cyclotron resonance heating (ECRH) system of the ASDEX Upgrade tokomak has been upgraded over the last 15 years from a 2MW, 2 s, 140 GHz system to an 8MW, 10 s, dual frequency system (105/140 GHz). The power exceeds the L/H power threshold by at least a factor of two, even for high densities, and roughly equals the installed ion cyclotron range of frequencies power. The power of both wave heating systems together (>10MW in the plasma) is about half of the available neutral beam injection (NBI) power, allowing significant variations of torque input, of the shape of the heating profile and of Qe/Qi, even at high heating power. For applications at a low magnetic field an X3-heating scheme is routinely in use. Such a scenario is no...
For stellarators, which need no or only small amounts of current drive, electron-cyclotron-resonance...
Recent experiments in ASDEX Upgrade aimed at improving the physics base for ITER and DEMO to prepare...
Recent experiments on the ASDEX Upgrade tokamak aim at improving the physics base for ITER andDEMOto...
For stellarators, which need no or only small amounts of current drive, electron-cyclotron-resonance...
The research of EAST program is mostly focused on the development of high performance steady state s...
This contribution deals with H-modes with significant heat exchange between electrons and ions, but ...
The medium size divertor tokamak ASDEX Upgrade (major and minor radii 1.65 m and 0.5 m, respectively...
Electron cyclotron resonance heating (ECRH) is a mature technology that has progressed constantly ov...
To achieve reactor-relevant conditions in a tokamak plasma, auxiliary heating systems are required a...
The medium size divertor tokamak ASDEX Upgrade (major and minor radii 1.65 m and 0.5 m, respectively...
Dedicated studies performed for toroidal Alfvén eigenmodes (TAEs) in ASDEX-Upgrade (AUG) discharges ...
Electron Cyclotron Resonance Heating (ECRH) is a key component in the heating arsenal for the next s...
Electron Cyclotron Resonance Heating (ECRH) has shown its importance in tokamak stud-ies and its pre...
For stellarators, which need no or only small amounts of current drive, electron-cyclotron-resonance...
Recent experiments in ASDEX Upgrade aimed at improving the physics base for ITER and DEMO to prepare...
Recent experiments on the ASDEX Upgrade tokamak aim at improving the physics base for ITER andDEMOto...
For stellarators, which need no or only small amounts of current drive, electron-cyclotron-resonance...
The research of EAST program is mostly focused on the development of high performance steady state s...
This contribution deals with H-modes with significant heat exchange between electrons and ions, but ...
The medium size divertor tokamak ASDEX Upgrade (major and minor radii 1.65 m and 0.5 m, respectively...
Electron cyclotron resonance heating (ECRH) is a mature technology that has progressed constantly ov...
To achieve reactor-relevant conditions in a tokamak plasma, auxiliary heating systems are required a...
The medium size divertor tokamak ASDEX Upgrade (major and minor radii 1.65 m and 0.5 m, respectively...
Dedicated studies performed for toroidal Alfvén eigenmodes (TAEs) in ASDEX-Upgrade (AUG) discharges ...
Electron Cyclotron Resonance Heating (ECRH) is a key component in the heating arsenal for the next s...
Electron Cyclotron Resonance Heating (ECRH) has shown its importance in tokamak stud-ies and its pre...
For stellarators, which need no or only small amounts of current drive, electron-cyclotron-resonance...
Recent experiments in ASDEX Upgrade aimed at improving the physics base for ITER and DEMO to prepare...
Recent experiments on the ASDEX Upgrade tokamak aim at improving the physics base for ITER andDEMOto...