From Fusion to DEMOExplores the progress in magnetic confinement fusion, roadmaps to fusion power, ITER components, and the path towards DEMO.
Fusion Reactor LimitsExplores the performance and operational limits of tokamaks in fusion energy, focusing on critical parameters, constraints, and disruption mitigation.
Plasma Physics and Fusion EnergyExplores the complexity of boundary plasma in fusion energy research, focusing on experimental techniques and simulations to understand plasma dynamics and improve fusion reactor design.
Approaches to Fusion EnergyExplores the two main approaches to fusion energy, covering conditions for energy generation, compression techniques, physics of Inertial Confinement Fusion, progress in research, and engineering constraints.
Fusion Reactor Edge PhysicsExplores the physics at the edge of fusion devices, focusing on confining plasma and optimizing fusion reactor operation.
Inertial and Magnetic FusionExplores the principles of Inertial and Magnetic Fusion, discussing energy balance, challenges, and progress towards burning plasma.
Plasma Heating: Neutral BeamsExplores the limitations of ohmic heating in plasma and the advantages and drawbacks of neutral beam injection for additional plasma heating.
Plasma Physics and Fusion EnergyDelves into plasma physics, fusion energy, turbulence, heat flux, and numerical simulations for optimizing fusion reactor operation.
Heating and Current Drive by WavesExplores the use of waves for heating and current drive in tokamaks, focusing on ICRH and LH waves, their mechanisms, and antenna features.
Burning Plasmas: Fast Ions RoleExplores burning plasma specifics, fast ions role, losses, MHD modes, turbulence, Alfvén waves interaction, and burn stability.