Area of research
Nuclear and High Energy Physics · Astronomy and Astrophysics
Research interest
Research interests include Magnetic confinement fusion research, Ionosphere and magnetosphere dynamics, Laser-Plasma Interactions and Diagnostics, and Fusion materials and technologies.
Spherical tokamak physics research in preparation for the operation of NSTX-U
Predicting core transport in ITER baseline discharges with neon injections
Feasibility study for soft x-ray imaging as fluctuation diagnostic using gyrokinetic simulations
Quantitative analysis of zonal flow influence on turbulent plasmas driven by trapped electrons
Role of perturbed parallel magnetic field effects in predicting turbulent transport in NSTX
Analysis of the impact of parallel magnetic fluctuations on linear gyrokinetic stability in NSTX-U and verification of gyro-fluid models
Dynamic mode decomposition for gyrokinetic eigenmode analysis
Verification of fast ion and rotation effects on turbulence through comparison of GENE and CGYRO with L-mode plasmas in KSTAR
ITG turbulence in gyrokinetic simulations of high collisionality spherical tokamak plasmas
Minimizing CGYRO HPC Communication Costs in Ensembles with XGYRO by Sharing the Collisional Constant Tensor Structure
Investigation of the fast ion driven kinetic ballooning mode in FIRE mode discharge through gyrokinetic simulations
Separability of microtearing mode and electron temperature gradient turbulence regimes
Enhanced shear stabilization of turbulence in NSTX
NSTX-U research advancing the physics of spherical tokamaks
NSTX-U research advancing the physics of spherical tokamaks
Enhancing predictive capabilities in fusion burning plasmas through surrogate-based optimization in core transport solvers
Enhancing predictive capabilities in fusion burning plasmas through surrogate-based optimization in core transport solvers
Core performance predictions in projected SPARC first-campaign plasmas with nonlinear CGYRO
Investigation of fast ion effects on core turbulence in FIRE mode plasmas
Simultaneous reproduction of experimental profiles, fluxes, transport coefficients, and turbulence characteristics via nonlinear gyrokinetic profile predictions in a DIII-D ITER similar shape plasma
Prediction of performance and turbulence in ITER burning plasmas via nonlinear gyrokinetic profile prediction
Nonlinear gyrokinetic modelling of high confinement negative triangularity plasmas
Successful prediction of tokamak transport in the L-mode regime
Flow-shear destabilization of multiscale electron turbulence
Breakdown of Quasilinear Theory in the Tokamak Edge.
The benefits of HBM memory for CPU-based fusion simulations
Turbulence stabilization in tokamak plasmas with high population of fast ions
A flexible gyro-fluid system of equations
Flexible, integrated modeling of tokamak stability, transport, equilibrium, and pedestal physics
Transition from ITG to MTM linear instabilities near pedestals of high density plasmas