Area of research
Astronomy and Astrophysics · Aerospace Engineering
Research interest
Research interests include Jupiter (rocket family), Physics, Geology, Magnetosphere, Ionosphere, and Astrobiology.
Jupiter's Auroral Ionosphere: Juno Microwave Radiometer Observations of Energetic Electron Precipitation Events
Juno Microwave Radiometer Observations Of Europa’s Sub-Surface Ice
Super-adiabatic temperature gradient at Jupiter's equatorial zone and implications for the water abundance
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
Juno's Close Encounter With Ganymede—An Overview
Ganymede's Ionosphere Observed by a Dual‐Frequency Radio Occultation With Juno
Microwave observations reveal the deep extent and structure of Jupiter’s atmospheric vortices
Evidence for Multiple Ferrel‐Like Cells on Jupiter
Local Time Dependence of Jupiter's Polar Auroral Emissions Observed by Juno UVS
Reconnection‐ and Dipolarization‐Driven Auroral Dawn Storms and Injections
Jupiter’s atmospheric jet streams extend thousands of kilometres deep
Measurement of Jupiter’s asymmetric gravity field
A suppression of differential rotation in Jupiter’s deep interior
Prevalent lightning sferics at 600 megahertz near Jupiter’s poles
Comparing Jupiter interior structure models to <i>Juno</i> gravity measurements and the role of a dilute core
Jupiter’s interior and deep atmosphere: The initial pole-to-pole passes with the Juno spacecraft
Jupiter’s magnetosphere and aurorae observed by the Juno spacecraft during its first polar orbits
MWR: Microwave Radiometer for the Juno Mission to Jupiter
Morphology of the UV aurorae Jupiter during Juno's first perijove observations
Implications of the ammonia distribution on Jupiter from 1 to 100 bars as measured by the Juno microwave radiometer
The effect of differential rotation on Jupiter's low‐degree even gravity moments
Magnetospheric Science Objectives of the Juno Mission