Area of research
Materials Chemistry · Nuclear and High Energy Physics
Research interest
Research interests include Fusion materials and technologies, Nuclear Materials and Properties, Magnetic confinement fusion research, and Metal and Thin Film Mechanics.
A simplified di-homodyne transient grating spectroscopy system utilizing polarization.
Cr plasma-material-interaction in PISCES-RF: D thermal release, retention, and erosion
Growth of deuterium supersaturated surface layer with increasing ion flux and fluence in plasma-exposed tungsten
Technique for studying angular-dependent plasma-material interactions in high-flux plasma devices using angular micro-trenches and application to chromium cone formation
A first study of the complex-concentrated-alloy W38Ta36Cr15V11 in Pisces-RF high-flux deuterium plasma
Erosion of high-Z refractory coatings for helicon plasma source window
First in operando transient grating spectroscopy measurements on tungsten during high flux plasma operation in PISCES-RF
Angular distribution dependence of W migration on the ITER divertor from ERO2.0 simulations
Electrically insulating materials for centrifugal mirrors
Compositionally-driven surface nanostructuring on refractory compositionally complex alloys under low energy helium bombardment
An increased accuracy laser-induced transient grating spectroscopy analysis method for probing near surface thermal diffusivity with gigahertz frequency instrumentation
D retention in e-beam powder-bed fused (3-D printed) tungsten exposed to high-flux deuterium plasma in Pisces-RF
Assessment of the literature about Be-W mixed material layer formation in the fusion reactor environment
Analytical model for laser-induced transient grating measurements of thermal diffusivity in non-opaque materials
Reply to Comment on ‘Deuterium supersaturated surface layer in tungsten: ion energy dependence’
Impurity transport in PISCES-RF<sup>*</sup>
Deuterium plasma induced preferential erosion in ultra-high temperature ceramics TiB<sub>2</sub> and ZrB<sub>2</sub>
<sup>*</sup>
Observation of tantalum deposition and growth on TiB2 and ZrB2 from PISCES-RF deuterium and helium plasma exposures
Utilization of D2 molecular band emission for electron density measurement
Simulation of plasma and neutral transport in PISCES-RF using SOLPS-ITER<sup>*</sup>
Surface Composites Synthesized through the Incorporation of Atomic Layer Deposited AlO<sub><i>x</i></sub> into Nanoporous <i>Fuzzy</i> Tungsten.
A validated ballistic-He fuzz-growth model for high temperature erosive-plasma regimes
Corrigendum to “PISCES-RF: A helicon-plasma based linear-device for the study of fusion relevant plasma-materials-interactions” [Nucl. Mater. Energy 36 (2023) 101477]
Pisces-RF: A helicon-plasma based linear-device for the study of fusion relevant plasma-materials-interactions
Machine learning-aided line intensity ratio technique applied to deuterium plasmas
Deuterium supersaturated surface layer in tungsten: ion energy dependence
The dependence of tungsten fuzz layer thickness and porosity on tungsten deposition rate and helium ion fluence
A model of ballistic helium transport during helium-induced fuzz growth in tungsten
Changes in the structure and D desorptive release from W-D co-deposit layers caused by thermal annealing
Latest results of Eurofusion plasma-facing components research in the areas of power loading, material erosion and fuel retention