Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Environmental science, Aerosol, Atmospheric sciences, Lidar, Meteorology, and Satellite.
Marine Stratocumulus Clouds With More Coarse Sea Spray Aerosols Are Brighter
Satellite Retrievals Show Adiabatic Fraction of Marine Low Clouds Decreasing With Increasing Temperature and Height Above Cloud Base
Fine and coarse aerosols control of cloud water by evaporation-precipitation dynamics
Hidden Large Aerosol‐Driven Cloud Cover Effect Over High‐Latitude Ocean
Combined effects of fine and coarse marine aerosol on vertical raindrop size distribution
Large effects of fine and coarse aerosols on tropical deep convective systems throughout their lifecycle
Frontiers in Satellite‐Based Estimates of Cloud‐Mediated Aerosol Forcing
Observing Aerosol Primary Convective Invigoration and Its Meteorological Feedback
The Temperature Control of Cloud Adiabatic Fraction and Coverage
Coarse sea spray inhibits lightning
Opposing comparable large effects of fine aerosols and coarse sea spray on marine warm clouds
Full‐Tracking Algorithm for Convective Thunderstorm System From Initiation to Complete Dissipation
Retrieving instantaneous extinction of aerosol undetected by the CALIPSO layer detection algorithm
Observational Quantification of Aerosol Invigoration for Deep Convective Cloud Lifecycle Properties Based on Geostationary Satellite
Satellite retrieval of cloud base height and geometric thickness of low-level cloud based on CALIPSO
The Dependence of Ship‐Polluted Marine Cloud Properties and Radiative Forcing on Background Drop Concentrations
A simple multiscale layer detection algorithm for CALIPSO measurements
CALIOP retrieval of droplet effective radius accounting for cloud vertical homogeneity
Satellite retrieval of cloud base height and geometric thickness of low-levelcloud based on CALIPSO
Enhancement of Atmospheric Stability by Anomalous Elevated Aerosols During Winter in China