Area of research
Astronomy and Astrophysics · Atmospheric Science
Research interest
Research interests include Physics, Atmosphere (unit), Astrobiology, Titan (rocket family), Hot Jupiter, and Exoplanet.
Photochemical Hazes Dramatically Alter Temperature Structure and Atmospheric Circulation in 3D Simulations of Hot Jupiters
A Hydrodynamic Study of the Escape of Metal Species and Excited Hydrogen from the Atmosphere of the Hot Jupiter WASP-121b
CUTE Reveals Escaping Metals in the Upper Atmosphere of the Ultrahot Jupiter WASP-189b
Science goals and new mission concepts for future exploration of Titan’s atmosphere, geology and habitability: titan POlar scout/orbitEr and in situ lake lander and DrONe explorer (POSEIDON)
Signatures of strong magnetization and a metal-poor atmosphere for a Neptune-sized exoplanet
3D simulations of photochemical hazes in the atmosphere of hot Jupiter HD 189733b
WASP-52b. The effect of star-spot correction on atmospheric retrievals
The <i>Hubble</i> PanCET program: an extensive search for metallic ions in the exosphere of GJ 436 b
Transmission Spectroscopy of WASP-79b from 0.6 to 5.0 μm
Simulating the density of organic species in the atmosphere of Titan with a coupled ion-neutral photochemical model
An Optical Transmission Spectrum for the Ultra-hot Jupiter WASP-121b Measured with the Hubble Space Telescope
An ultrahot gas-giant exoplanet with a stratosphere
HST PanCET Program: A Cloudy Atmosphere for the Promising JWST Target WASP-101b
Hubble PanCET: an isothermal day-side atmosphere for the bloated gas-giant HAT-P-32Ab
The atmosphere of Pluto as observed by New Horizons
Detection of CO and HCN in Pluto’s atmosphere with ALMA
The formation of Charon’s red poles from seasonally cold-trapped volatiles
N2 state population in Titan’s atmosphere
Titan’s surface spectra at the Huygens landing site and Shangri-La
Cassini Imaging Science Subsystem observations of Titan’s south polar cloud
ELECTRODYNAMICS ON EXTRASOLAR GIANT PLANETS
Thermal escape from extrasolar giant planets
Aerosol growth in Titan’s ionosphere
The escape of heavy atoms from the ionosphere of HD209458b. I. A photochemical–dynamical model of the thermosphere
The escape of heavy atoms from the ionosphere of HD209458b. II. Interpretation of the observations
On the thermal electron balance in Titan’s sunlit upper atmosphere