Area of research
Astronomy and Astrophysics · Geophysics
Research interest
Research interests include Ionosphere and magnetosphere dynamics, Solar and Space Plasma Dynamics, Earthquake Detection and Analysis, and Geomagnetism and Paleomagnetism Studies.
Nonlinear Proton Dynamics in the Formation of Rising‐Tone EMIC Wave Subpackets
Simulation Study of Chorus Wave Modulation and Associated Electron Precipitation
Spatial‐Scale Analysis of Rising‐Tone Chorus Waves in a Dipole Magnetic Field From Two‐Dimensional Particle‐in‐Cell Simulation
Quantifying Electron Precipitation Driven by Chorus Waves Using Self‐Consistent Particle‐In‐Cell Simulations
Event Study of Cyclic Diffusion of the Proton Shell Distribution Associated With Quasi‐Periodic Rising Tone Fast Magnetosonic Waves
Resonant Electron Signatures in the Formation of Chorus Wave Subpackets
Nonlinear Electron Trapping Through Cyclotron Resonance in the Formation of Chorus Subpackets
Electron Dynamics Associated With Advection and Diffusion in Self‐Consistent Wave‐Particle Interactions With Oblique Chorus Waves
Simulation Study of Whistler-Mode Chorus Wave Generation in the Earth's Inner Magnetosphere
Evolution of Chorus Subpackets in the Earth's Magnetosphere
Simulation of Downward Frequency Chirping in the Rising Tone Chorus Element
Database of 'Evolution of Chorus Subpackets in the Earth's Magnetosphere'
Ducted Chorus Waves Cause Sub‐Relativistic and Relativistic Electron Microbursts
Observational Evidence for the Origin of Repetitive Chorus Emissions
The Angular Distribution of Lower Band Chorus Waves Near Plasmaspheric Plumes
A Parametric Study of Oxygen Ion Cyclotron Harmonic Wave Excitation and Polarization by an Oxygen Ring Distribution
Magnetosonic Wave Instability by Proton Ring and Shell Distributions
A Parametric Study of Oxygen Ion Cyclotron Harmonic Wave Excitation and Polarization by an Oxygen Ring Distribution
Whistler‐Mode Waves Trapped by Density Irregularities in the Earth's Magnetosphere
In Situ Observations of Whistler‐Mode Chorus Waves Guided by Density Ducts
Repetitive Emissions of Rising‐Tone Chorus Waves in the Inner Magnetosphere
Modeling of Bouncing Electron Microbursts Induced by Ducted Chorus Waves
Wave Normal Angle Distribution of Magnetosonic Waves in the Earth's Magnetosphere: 2‐D <scp>PIC</scp> Simulation
Particle‐in‐Cell Simulations of Characteristics of Rising‐Tone Chorus Waves in the Inner Magnetosphere
Particle‐in‐Cell Simulation of Rising‐Tone Magnetosonic Waves
Repetitive emissions of rising-tone chorus waves in the inner magnetosphere
Simulation dataset of "Chorus waves trapped by density irregularities in the Earth's magnetosphere"
Direct Observation of Subrelativistic Electron Precipitation Potentially Driven by EMIC Waves
Two‐Dimensional gcPIC Simulation of Rising‐Tone Chorus Waves in a Dipole Magnetic Field
Statistical Results of the Power Gap Between Lower‐Band and Upper‐Band Chorus Waves