Area of research
Nuclear and High Energy Physics · Materials Chemistry
Research interest
Research interests include Magnetic confinement fusion research, Fusion materials and technologies, Superconducting Materials and Applications, and Laser-Plasma Interactions and Diagnostics.
Impact of Resonant Magnetic Perturbations on the Toroidal Location of the Runaway Electron Final Loss Strike Point
Characterization of runaway electron impact on instrumented sacrificial limiters on DIII-D
Measurement of post-disruption runaway electron kinetic energy and pitch angle during final loss instability in DIII-D
Measurement of post-disruption runaway electron kinetic energy and pitch angle during final loss instability in DIII-D
First-wall fluxes from large and small ELMs
Divertor characterization and access to dissipative divertor conditions in negative triangularity discharges in DIII-D
Challenges and approaches to interpretive modeling of boundary plasma and neutral transport in a closed, pumped divertor
Impact of the isotope effect on divertor detachment and pedestal structure in DIII-D
Three-Dimensional Heat Flux and Thermal Analysis of Angled Tungsten Samples on DIII-D
Development of the first relativistic electron loss probe with pitch and energy resolution in the DIII-D tokamak
Taming harmful bursts and heat flux in high-confinement tokamak plasmas.
Overview of results from the 2023 DIII-D negative triangularity campaign
Overview of results from the 2023 DIII-D negative triangularity campaign
High performance power handling in the absence of an H-mode edge in negative triangularity DIII-D plasmas
Broadening of the Divertor Heat Flux Profile in High Confinement Tokamak Fusion Plasmas with Edge Pedestals Limited by Turbulence in DIII-D
Experimental evidence of enhanced radial transport in small ELM regimes at DIII-D
Wall heating by subcritical energetic electrons generated by the runaway electron avalanche source
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Investigation of pedestal parameters and divertor heat fluxes in small ELM regimes in DIII-D
Divertor heat load estimates on NSTX and DIII-D using new and open-source 2D inversion analysis code
Understanding the negative triangularity ELM trigger and ELM free state on DIII-D with ECE-imaging
Study on divertor detachment and pedestal characteristics in the DIII-D upper closed divertor
Measurements and modeling of type-I and type-II ELMs heat flux to the DIII-D divertor
In-situ coating of silicon-rich films on tokamak plasma-facing components with real-time Si material injection
Spectroscopic measurement of increases in hydrogen molecular rotational temperature with plasma-facing surface temperature and due to collisional-radiative processes in tokamaks
Determination of the characteristic magnetic pre-sheath length at divertor surfaces using micro-engineered targets on DiMES at DIII-D
Measurements of multiple heat flux components at the divertor target by using surface eroding thermocouples (invited).
Development of an integrated core–edge scenario using the super H-mode
H-mode grade confinement in L-mode edge plasmas at negative triangularity on DIII-D
Physics conclusions in support of ITER W divertor monoblock shaping
First demonstration of rapid shutdown using neon shattered pellet injection for thermal quench mitigation on DIII-D