Area of research
Astronomy and Astrophysics · Molecular Biology
Research interest
Research interests include Jupiter (rocket family), Physics, Magnetosphere, Jovian, Astrobiology, and Geology.
Electron Densities in Jupiter's Upper Ionosphere Inferred From Juno Plasma Wave Observations
Juno‐Derived Electron Density Profiles of the High‐Latitude Jovian Ionosphere
Jupiter's Auroral Ionosphere: Juno Microwave Radiometer Observations of Energetic Electron Precipitation Events
Juno Microwave Radiometer Observations Of Europa’s Sub-Surface Ice
MASPEX-Europa: The Europa Clipper Neutral Gas Mass Spectrometer Investigation
Super-adiabatic temperature gradient at Jupiter's equatorial zone and implications for the water abundance
Generation and Impacts of Whistler‐Mode Waves During Energetic Electron Injections in Jupiter's Outer Radiation Belt
Statistical Survey of Interchange Events in the Jovian Magnetosphere Using Juno Observations
Survey of Whistler‐Mode Wave Amplitudes and Frequency Spectra in Jupiter's Magnetosphere
Jupiter’s interior from Juno: Equation-of-state uncertainties and dilute core extent
Salts and organics on Ganymede’s surface observed by the JIRAM spectrometer onboard Juno
Microwave Observations of Ganymede's Sub‐Surface Ice: I. Ice Temperature and Structure
Radio Occultation Measurements of Europa's Ionosphere From Juno's Close Flyby
Plasma Wave and Particle Dynamics During Interchange Events in the Jovian Magnetosphere Using Juno Observations
Plasma Wave and Particle Dynamics During Interchange Events in the Jovian Magnetosphere Using Juno Observations
Plasma Wave and Particle Dynamics During Interchange Events in the Jovian Magnetosphere Using Juno Observations
Jupiter’s inhomogeneous envelope
Revelations on Jupiter's formation, evolution and interior: Challenges from Juno results
Juno Spacecraft Measurements of Jupiter’s Gravity Imply a Dilute Core
Juno's Close Encounter With Ganymede—An Overview
Juno Plasma Wave Observations at Ganymede
Ganymede's Ionosphere Observed by a Dual‐Frequency Radio Occultation With Juno
Energetic Charged Particle Observations During Juno's Close Flyby of Ganymede
Driver of Energetic Electron Precipitation in the Vicinity of Ganymede
Are Dawn Storms Jupiter's Auroral Substorms?
Microwave observations reveal the deep extent and structure of Jupiter’s atmospheric vortices
Evidence for Multiple Ferrel‐Like Cells on Jupiter
Quantification of Diffuse Auroral Electron Precipitation Driven by Whistler Mode Waves at Jupiter
Local Time Dependence of Jupiter's Polar Auroral Emissions Observed by Juno UVS
Energetic Electron Distributions Near the Magnetic Equator in the Jovian Plasma Sheet and Outer Radiation Belt Using Juno Observations