Efficient off-axis current drive scalable to reactors is a key enabling technology for developing economical, steady state tokamak. Previous studies have focussed on high field side (HFS) launch of lower hybrid current drive (LHCD) in double null configurations in reactor grade plasmas and found improved wave penetration and high current drive efficiency with driven current profile peaked near a normalized radius, ρ, of 0.6-0.8, consistent with advanced tokamak scenarios. Further, HFS launch potentially mitigates plasma material interaction and coupling issues. For this work, we sought credible HFS LHCD scenario for DIII-D advanced tokamak discharges through utilizing advanced ray tracing and Fokker Planck simulation tools (GENRAY+CQL3D) co...
The status of modeling work focused on developing the advanced tokamak scenarios in DIII-D is discus...
EAST has been equipped with two high power lower hybrid current drive (LHCD) systems with operating ...
The coupled GENRAY-CQL3D code has been used to do systematic ray-tracing and Fokker-Planck analysis ...
Efficient off-axis current drive scalable to reactors is a key enabling technology for developing ec...
The establishment of reactor-relevant radiofrequency heating and current drive techniques is a focus...
Efficient off-axis current drive is crucial for economic, steady-state tokamak fusion power plants. ...
First principle modeling of the lower hybrid (LH) current drive in tokamak plasmas is a longstanding...
Progress in understanding lower hybrid current drive (LHCD) at high density has been made through ex...
The lower hybrid current drive (LHCD) system plays a crucial role in the mission of the Experimental...
DIII-D physics research addresses critical challenges for the operation of ITER and the next generat...
The status of modeling work focused on developing the advanced tokamak scenarios in DIII-D is discus...
EAST has been equipped with two high power lower hybrid current drive (LHCD) systems with operating ...
The coupled GENRAY-CQL3D code has been used to do systematic ray-tracing and Fokker-Planck analysis ...
Efficient off-axis current drive scalable to reactors is a key enabling technology for developing ec...
The establishment of reactor-relevant radiofrequency heating and current drive techniques is a focus...
Efficient off-axis current drive is crucial for economic, steady-state tokamak fusion power plants. ...
First principle modeling of the lower hybrid (LH) current drive in tokamak plasmas is a longstanding...
Progress in understanding lower hybrid current drive (LHCD) at high density has been made through ex...
The lower hybrid current drive (LHCD) system plays a crucial role in the mission of the Experimental...
DIII-D physics research addresses critical challenges for the operation of ITER and the next generat...
The status of modeling work focused on developing the advanced tokamak scenarios in DIII-D is discus...
EAST has been equipped with two high power lower hybrid current drive (LHCD) systems with operating ...
The coupled GENRAY-CQL3D code has been used to do systematic ray-tracing and Fokker-Planck analysis ...