Area of research
Atomic and Molecular Physics, and Optics · Astronomy and Astrophysics
Research interest
Research interests include Dust and Plasma Wave Phenomena, Ionosphere and magnetosphere dynamics, Particle Dynamics in Fluid Flows, and Magnetic confinement fusion research.
Ion density waves driving the formation of filamentary dust structures
Accelerating the fusion workforce in the USA
Experiments and modeling of dust particle heating resulting from changes in polarity switching in the PK-4 microgravity laboratory
Anisotropic anomalous diffusion in microgravity dusty plasma. I. Nonextensive statistical analysis
Technology readiness assessment of magnetohydrodynamic stability control
The dual-electron cyclotron emission based measurement of 3D structures on DIII-D tokamak
MagNetUS: a magnetized plasma research ecosystem
Anisotropic anomalous diffusion and nonequilibrium in microgravity dusty plasma. II. Spectral analysis
Establishment of a Nationwide Plasma Science and Fusion Energy Certification and Apprenticeship Programs
Formation of Organic Compounds Through Meteoritic Atmospheric Shock
Vortex merging in strongly coupled dusty plasmas using a visco-elastic fluid model
Report of the FESAC Facilities Construction Projects Subcommittee
Meteoroid Ablation within the Jovian Atmosphere: Implications on the Oxygen Delivery to the Gas Giant's Atmosphere
Physics and applications of dusty plasmas: The Perspectives 2023
Ring structural transitions in strongly coupled dusty plasmas
Enabling Discoveries in Heliospheric Science through Laboratory Plasma Experiments
Energetic electron transport in magnetic fields with island chains and stochastic regions
Next Generation Machine to Study Heliophysics in the Laboratory
Numerical Modeling of the Plasmakristall-4 Experiment on the ISS
Liquid Plasma Crystals on the ISS
Summary report from the mini-conference on workforce development through research-based, plasma-focused activities
Measurements and Modeling of Dust Grain Transport in Strongly Magnetized Plasmas
Structure Transitions in Dusty Plasmas Confined by An Annular Potential Well
Influence of temporal variations in plasma conditions on the electric potential near self-organized dust chains
Microgravity Dusty Plasmas Exhibit Properties Of Liquid Crystals
Publisher's Note: “Influence of temporal variations in plasma conditions on the electric potential near self-organized dust chains” [Phys. Plasmas <b>29</b>, 023701 (2022)]
Effect of ionization waves on dust chain formation in a DC discharge
Fractional Laplacian spectral approach to turbulence in a dusty plasma monolayer
Design and Testing of DiMES Carbon Ablation Rods in the DIII-D Tokamak