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.
Global gyro-kinetic ion temperature gradient and trapped electron mode turbulence modelling in
<i>X</i>
-point geometry in negative and positive triangularity
Progress and innovations in the TCV tokamak research programme
Thermal helium beam measurements of plasma edge turbulence in positive and negative triangularity plasmas on TCV
Parametric decay instabilities of microwave beams in fusion plasmas: occurrence, consequences and new possibilities
Modelling of ETG turbulent transport in the TCV pedestal
An upper pressure limit for low-<i>Z</i> benign termination of runaway electron beams in TCV
On the interplay between plasma triangularity and micro-tearing turbulence
On the feasibility of Ohmically heated negative triangularity tokamak power plants
Survey of the edge radial electric field in L-mode TCV plasmas using Doppler backscattering
Gyrokinetic simulations of the core turbulence in the reference JT-60SA scenario
Design and implementation of a model-based hierarchical architecture for plasma shape control in the TCV tokamak
Implementation of an ITER-relevant QP-based current limit avoidance algorithm in the TCV tokamak
Edge radial electric field in positive and negative triangularity plasmas in the TCV tokamak
Electromagnetic analysis of breakdown conditions and experimental validation of 0D Townsend breakdown theory on the TCV tokamak
Isotope effects in linear and saturated ohmic confinement of TCV tokamak and gyrokinetic validation
Nonlinear effects in fluctuation short pulse reflectometry
Experimental characterization of inter-ELM modes in type-I ELMy scenarios at TCV using the thermal helium beam diagnostic
Laser-aided diagnostics of JT-60SA
Overview of results from the 2023 DIII-D negative triangularity campaign
Overview of results from the 2023 DIII-D negative triangularity campaign
Experimental research on the TCV tokamak
Physical insights from the aspect ratio dependence of turbulence in negative triangularity plasmas
Benign termination of runaway electron beams on ASDEX Upgrade and TCV
Experiments and gyrokinetic simulations of TCV plasmas with negative triangularity in view of DTT operations
Progress in the development of the ITER baseline scenario in TCV
Comparison of detachment in Ohmic plasmas with positive and negative triangularity
Automated shot-to-shot optimization of the plasma start-up scenario in the TCV tokamak
Expulsion of runaway electrons using ECRH in the TCV tokamak
Negative triangularity scenarios: from TCV and AUG experiments to DTT predictions
Impact of microwave beam scattering by density fluctuations on the electron–cyclotron power deposition profile in tokamaks