Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research interests include Environmental science, Aerosol, Atmospheric sciences, Cloud condensation nuclei, Meteorology, and Boundary layer.
Sea salt reactivity over the northwest Atlantic: an in-depth look using the airborne ACTIVATE dataset
Boundary Layer Structures Over the Northwest Atlantic Derived From Airborne High Spectral Resolution Lidar and Dropsonde Measurements During the ACTIVATE Campaign
Dust, Convection, Winds, and Waves: The 2022 NASA CPEX-CV 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
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
New particle formation in the tropical free troposphere during CAMP <sup>2</sup> Ex: statistics and impact of emission sources, convective activity, and synoptic conditions
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
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
Seasonal updraft speeds change cloud droplet number concentrations in low-level clouds over the western North Atlantic
Dilution of Boundary Layer Cloud Condensation Nucleus Concentrations by Free Tropospheric Entrainment During Marine Cold Air Outbreaks
Measurements from inside a Thunderstorm Driven by Wildfire: The 2019 FIREX-AQ Field Experiment
Analysis of MONARC and ACTIVATE Airborne Aerosol Data for Aerosol-Cloud Interaction Investigations: Efficacy of Stairstepping Flight Legs for Airborne In Situ Sampling
Aircraft Observations of Turbulence in Cloudy and Cloud‐Free Boundary Layers Over the Western North Atlantic Ocean From ACTIVATE and Implications for the Earth System Model Evaluation and Development
Relationships between supermicrometer particle concentrations and cloud water sea salt and dust concentrations: analysis of MONARC and ACTIVATE data
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
Organic enrichment in droplet residual particles relative to out of cloud over the northwestern Atlantic: analysis of airborne ACTIVATE data
Understanding the Evolution of Smoke Mass Extinction Efficiency Using Field Campaign Measurements
Cleaner burning aviation fuels can reduce contrail cloudiness
Rapid cloud removal of dimethyl sulfide oxidation products limits SO <sub>2</sub> and cloud condensation nuclei production in the marine atmosphere
On Assessing ERA5 and MERRA2 Representations of Cold‐Air Outbreaks Across the Gulf Stream
Cloud drop number concentrations over the western North Atlantic Ocean: seasonal cycle, aerosol interrelationships, and other influential factors
Measurement report: Long-range transport patterns into the tropical northwest Pacific during the CAMP <sup>2</sup> Ex aircraft campaign: chemical composition, size distributions, and the impact of convection
Large-Eddy Simulations of Marine Boundary Layer Clouds Associated with Cold-Air Outbreaks during the ACTIVATE Campaign. Part I: Case Setup and Sensitivities to Large-Scale Forcings
Particulate Oxalate‐To‐Sulfate Ratio as an Aqueous Processing Marker: Similarity Across Field Campaigns and Limitations
Total organic carbon and the contribution from speciated organics in cloud water: airborne data analysis from the CAMP <sup>2</sup> Ex field campaign