activity
20122024
most citedStroemgren survey for Asteroseismology and Galactic Archaeology: let the SAGA begin

123 citations · 416 across the 18 of their papers we have counts for

collaborators
Showing astro-ph.EPShow all

8 papers · 1 filter

astro-ph.EP2024

The Kinematic and Chemical Properties of the Close-in Planet Host Star 8 UMi

Huiling Chen, Yang Huang, Wei Zhu +11

A recent study by Hon et al. reported that a close-in planet around the red clump star, 8 UMi, should have been engulfed during the expansion phase of its parent star's evolution.…

astro-ph.EP20237 cited

The Tianlin Mission: a 6m UV/Opt/IR space telescope to explore the habitable worlds and the universe

Wei Wang, Meng Zhai, Gang Zhao +7

[Abridged] It is expected that the ongoing and future space-borne planet survey missions including TESS, PLATO, and Earth 2.0 will detect thousands of small to medium-sized planets…

astro-ph.EP20233 cited

Atmospheric composition of WASP-85Ab with ESPRESSO/VLT observations

Zewen Jiang, Wei Wang, Guo Chen +9

Transit spectroscopy is the most frequently used technique to reveal the atmospheric properties of exoplanets, while that at high resolution has the advantage to resolve the small…

astro-ph.EP202310 cited

Detection of rubidium and samarium in the atmosphere of the ultra-hot Jupiter MASCARA-4b

Zewen Jiang, Wei Wang, Gang Zhao +5

Ultra-hot Jupiters (UHJs) possess the most extreme environments among various types of exoplanets, making them ideal laboratories to study the chemical composition and kinetics pro…

astro-ph.EP202314 cited

Detection of TiO and VO in the atmosphere of WASP-121b and Evidence for its temporal variation

Qinglin Ouyang, Wei Wang, Meng Zhai +6

We report the transit observations of the ultra hot Jupiter WASP-121b using the Goodman High Throughput Spectrograph (GHTS) at the 4-meter ground-based telescope Southern Astrophys…

astro-ph.EP20239 cited

Thermal Emission from the hot Jupiter WASP-103b in J and Ks Bands

Yaqing Shi, Wei Wang, Gang Zhao +8

Hot Jupiters, particularly those with temperature higher than 2000 K are the best sample of planets that allow in-depth characterization of their atmospheres. We present here a the…