Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research focused on Cirrus and Daytime, with related work in Lidar, Atmospheric sciences, Environmental science. Notable publications include 'Daytime Cirrus Cloud Top-of-the-Atmosphere Radiative Forcing Properties at a Midlatitude Site and Their Global Consequences', 'Daytime Top-of-the-Atmosphere Cirrus Cloud Radiative Forcing Properties at Singapore', and 'Impact of varying lidar measurement and data processing techniques in evaluating cirrus cloud and aerosol direct radiative effects'.
Cirrus Cloud Top-of-the-Atmosphere Net Daytime Forcing in the Alaskan Subarctic from Ground-Based MPLNET Monitoring
Impact of varying lidar measurement and data processing techniques in evaluating cirrus cloud and aerosol direct radiative effects
Vertically Resolved Precipitation Intensity Retrieved through a Synergy between the Ground-Based NASA MPLNET Lidar Network Measurements, Surface Disdrometer Datasets and an Analytical Model Solution
Daytime Top-of-the-Atmosphere Cirrus Cloud Radiative Forcing Properties at Singapore
Daytime Cirrus Cloud Top-of-the-Atmosphere Radiative Forcing Properties at a Midlatitude Site and Their Global Consequences