Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Atmospheric aerosols and clouds, Atmospheric chemistry and aerosols, Atmospheric Ozone and Climate, and Atmospheric and Environmental Gas Dynamics.
Atmospheric processing and aerosol aging responsible for observed increase in absorptivity of long-range-transported smoke over the southeast Atlantic
An attribution of the low single-scattering albedo of biomass burning aerosol over the southeastern Atlantic
Use of lidar aerosol extinction and backscatter coefficients to estimate cloud condensation nuclei (CCN) concentrations in the southeast Atlantic
On the differences in the vertical distribution of modeled aerosol optical depth over the southeastern Atlantic
Using the Black Carbon Particle Mixing State to Characterize the Lifecycle of Biomass Burning Aerosols
Modeled and observed properties related to the direct aerosol radiative effect of biomass burning aerosol over the southeastern Atlantic
Cloud processing and weeklong ageing affect biomass burning aerosol properties over the south-eastern Atlantic
Biomass burning aerosol heating rates from the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) 2016 and 2017 experiments
Biomass burning and marine aerosol processing over the southeast Atlantic Ocean: a TEM single-particle analysis
A meteorological overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) campaign over the southeastern Atlantic during 2016–2018: Part 2 – Daily and synoptic characteristics
An attribution of the low single-scattering albedo of biomass-burning aerosol over the southeast Atlantic
Intercomparison of airborne and surface-based measurements during the CLARIFY, ORACLES and LASIC field experiments
A meteorological overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) campaign over the southeast Atlantic during 2016–2018: Part 2 – daily and synoptic characteristics
An overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) project: aerosol–cloud–radiation interactions in the southeast Atlantic basin
The CLoud–Aerosol–Radiation Interaction and Forcing: Year 2017 (CLARIFY-2017) measurement campaign
Exploring the elevated water vapor signal associated with the free tropospheric biomass burning plume over the southeast Atlantic Ocean
Impact of the variability in vertical separation between biomass burning aerosols and marine stratocumulus on cloud microphysical properties over the Southeast Atlantic
Spatiotemporal Heterogeneity of Aerosol and Cloud Properties Over the Southeast Atlantic: An Observational Analysis
A meteorological overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) campaign over the southeastern Atlantic during 2016–2018: Part 1 – Climatology
Empirically derived parameterizations of the direct aerosol radiative effect based on ORACLES aircraft observations
Biomass burning and marine aerosol processing over the southeast Atlantic Ocean: A TEM single particle analysis
Evaluation of Novel NASA Moderate Resolution Imaging Spectroradiometer and Visible Infrared Imaging Radiometer Suite Aerosol Products and Assessment of Smoke Height Boundary Layer Ratio During Extreme Smoke Events in the Western USA
Modeled and observed properties related to the direct aerosol radiative effect of biomass burning aerosol over the Southeast Atlantic
A meteorological overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) campaign over the southeast Atlantic during 2016–2018
Direct and semi-direct radiative forcing of biomass-burning aerosols over the southeast Atlantic (SEA) and its sensitivity to absorbing properties: a regional climate modeling study
Biomass burning aerosol as a modulator of the droplet number in the southeast Atlantic region
Modeling the smoky troposphere of the southeast Atlantic: a comparison to ORACLES airborne observations from September of 2016
An overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) project: aerosol-cloud-radiation interactions in the Southeast Atlantic basin
Daytime aerosol optical depth above low-level clouds is similar to that in adjacent clear skies at the same heights: airborne observation above the southeast Atlantic
The North Atlantic Aerosol and Marine Ecosystem Study (NAAMES): Science Motive and Mission Overview