Area of research
Nuclear and High Energy Physics · Materials Chemistry
Research interest
Research focused on Tokamak and Pedestal, with related work in Plasma, Divertor, Ion. Notable publications include 'Overview of physics results from the conclusive operation of the National Spherical Torus Experiment', 'Observations of wall conditioning by means of boron powder injection in DIII-D H-mode plasmas', and 'Dust and powder in fusion plasmas: recent developments in theory, modeling, and experiments'.
Deuterium retention in pre-lithiated samples and Li–D co-deposits in the DIII-D tokamak
Impact of ionization peak location on measured opaqueness in DIII-D H-mode plasmas
Highest fusion performance without harmful edge energy bursts in tokamak
DIII-D research to provide solutions for ITER and fusion energy
Pedestal main ion particle transport inference through gas puff modulation with experimental source measurements
Reducing plasma-material interactions in the DIII-D low-Z and high-Z divertors with impurity powders
HAL (Le Centre pour la Communication Scientifique Directe) 2023cited by 0position: middle
Dust and powder in fusion plasmas: recent developments in theory, modeling, and experiments
DIII-D research advancing the physics basis for optimizing the tokamak approach to fusion energy
Enhancement of edge turbulence concomitant with ELM suppression during boron powder injection in EAST
Observations of wall conditioning by means of boron powder injection in DIII-D H-mode plasmas
Suppression of edge localized modes with real-time boron injection using the tungsten divertor in EAST
Overview of physics results from the conclusive operation of the National Spherical Torus Experiment
Fast-ion energy loss during TAE avalanches in the National Spherical Torus Experiment