Area of research
Nuclear and High Energy Physics · Astronomy and Astrophysics
Research interest
Research interests include Magnetic confinement fusion research, Ionosphere and magnetosphere dynamics, Fusion materials and technologies, and Superconducting Materials and Applications.
NSTX-U research advancing the physics of spherical tokamaks
A control oriented strategy of disruption prediction to avoid the configuration collapse of tokamak reactors
DIII-D research to provide solutions for ITER and fusion energy
JET D-T scenario with optimized non-thermal fusion
Overview of JET results for optimising ITER operation
Enhanced performance in fusion plasmas through turbulence suppression by megaelectronvolt ions
Disruption prediction with artificial intelligence techniques in tokamak plasmas
DIII-D research advancing the physics basis for optimizing the tokamak approach to fusion energy
Integrated fusion simulation with self-consistent core-pedestal coupling
Integrated modeling applications for tokamak experiments with OMFIT
Improved understanding of physics processes in pedestal structure, leading to improved predictive capability for ITER
Intrinsic Rotation Driven by Non-Maxwellian Equilibria in Tokamak Plasmas