Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Environmental science, Aerosol, Atmospheric sciences, Meteorology, Cloud condensation nuclei, and Climatology.
The NASA ACTIVATE Mission
Tropospheric aerosols over the western North Atlantic Ocean during the winter and summer deployments of ACTIVATE 2020: life cycle, transport, and distribution
On the Physicochemical Differences between Cloud Droplet Residual Particles and Below-Cloud Particles over the Northwest Atlantic
A method to retrieve mixed-phase cloud vertical structure from airborne lidar
Parameterizations of US wildfire and prescribed fire emission ratios and emission factors based on FIREX-AQ aircraft measurements
Measurement report: Cloud and environmental properties associated with aggregated shallow marine cumulus and cumulus congestus
Microphysical Evolution in Mixed-Phase Midlatitude Marine Cold-Air Outbreaks
Vertical variability of aerosol properties and trace gases over a remote marine region: a case study over Bermuda
Bridging gas and aerosol properties between the northeastern US and Bermuda: analysis of eight transit flights
Boundary Layer Structures Over the Northwest Atlantic Derived From Airborne High Spectral Resolution Lidar and Dropsonde Measurements During the ACTIVATE Campaign
Airborne HSRL-2 measurements of elevated aerosol depolarization associated with non-spherical sea salt
Spatially coordinated airborne data and complementary products for aerosol, gas, cloud, and meteorological studies: the NASA ACTIVATE dataset
Impact of Biomass Burning Organic Aerosol Volatility on Smoke Concentrations Downwind of Fires
Dropsonde observations during the Aerosol Cloud meTeorology Interactions oVer the western ATlantic Experiment
Overview and statistical analysis of boundary layer clouds and precipitation over the western North Atlantic Ocean
A cloud detection neural network for above-aircraft clouds using airborne cameras
Large-Eddy Simulations of Marine Boundary Layer Clouds Associated with Cold-Air Outbreaks during the ACTIVATE Campaign. Part II: Aerosol–Meteorology–Cloud Interaction
Spatially-coordinated airborne data and complementary products for aerosol, gas, cloud, and meteorological studies: The NASA ACTIVATE dataset
Parameterizations of US wildfire and prescribed fire emission ratios and emission factors based on FIREX-AQ aircraft measurements
Overview and statistical analysis of boundary layer clouds and precipitation over the western North-Atlantic Ocean
Multi-campaign ship and aircraft observations of marine cloud condensation nuclei and droplet concentrations
Airborne Emission Rate Measurements Validate Remote Sensing Observations and Emission Inventories of Western U.S. Wildfires
Polarimeter + Lidar–Derived Aerosol Particle Number Concentration
Measurements from inside a Thunderstorm Driven by Wildfire: The 2019 FIREX-AQ Field Experiment
Cold Air Outbreaks Promote New Particle Formation Off the U.S. East Coast
Dimethylamine in cloud water: a case study over the northwest Atlantic Ocean
Impact of Meteorological Factors on the Mesoscale Morphology of Cloud Streets during a Cold-Air Outbreak over the Western North Atlantic
Measurement report: Closure analysis of aerosol–cloud composition in tropical maritime warm convection
Understanding the Evolution of Smoke Mass Extinction Efficiency Using Field Campaign Measurements
Ozone chemistry in western U.S. wildfire plumes