Area of research
Atmospheric Science · Global and Planetary Change
Research interest
Research focused on Aerosol and Environmental science, with related work in Radiative forcing, Atmospheric sciences, Forcing (mathematics). Notable publications include 'Radiative forcing of the direct aerosol effect from AeroCom Phase II simulations', 'Remote Sensing of Droplet Number Concentration in Warm Clouds: A Review of the Current State of Knowledge and Perspectives', and 'An overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) project: aerosol–cloud–radiation interactions in the southeast Atlantic basin'.
Model Intercomparison of the Impacts of Varying Cloud Droplet–Nucleating Aerosols on the Life Cycle and Microphysics of Isolated Deep Convection
RCEMIP-ACI: Aerosol-Cloud Interactions in a Multimodel Ensemble of Radiative-Convective Equilibrium Simulations 
Pushing the frontiers in climate modelling and analysis with machine learning
Has Reducing Ship Emissions Brought Forward Global Warming?
Multifaceted aerosol effects on precipitation
Sea surface warming patterns drive hydrological sensitivity uncertainties
Identifying climate model structural inconsistencies allows for tight constraint of aerosol radiative forcing
Dependence of Fast Changes in Global and Local Precipitation on the Geographical Location of Absorbing Aerosol
Publisher Correction: Sea surface warming patterns drive hydrological sensitivity uncertainties
The Impact of a Land‐Sea Contrast on Convective Aggregation in Radiative‐Convective Equilibrium
Opportunistic experiments to constrain aerosol effective radiative forcing
Tropical and Boreal Forest – Atmosphere Interactions: A Review
Strong control of effective radiative forcing by the spatial pattern of absorbing aerosol
Boundary conditions representation can determine simulated aerosol effects on convective cloud fields
Examining the Regional Co‐Variability of the Atmospheric Water and Energy Imbalances in Different Model Configurations—Linking Clouds and Circulation
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
Impacts of Varying Concentrations of Cloud Condensation Nuclei on Deep Convective Cloud Updrafts—A Multimodel Assessment
Anthropogenic Aerosols Modulated 20th‐Century Sahel Rainfall Variability Via Their Impacts on North Atlantic Sea Surface Temperature
Opportunistic Experiments to Constrain Aerosol Effective Radiative Forcing
Forcing Convection to Aggregate Using Diabatic Heating Perturbations
Constraining the Twomey effect from satellite observations: issues and perspectives
An overview of the ORACLES (ObseRvations of Aerosols above CLouds and their intEractionS) project: aerosol-cloud-radiation interactions in the Southeast Atlantic basin
An AeroCom–AeroSat study: intercomparison of satellite AOD datasets for aerosol model evaluation
An AeroCom/AeroSat study: Intercomparison of Satellite AOD Datasets for Aerosol Model Evaluation
Constraining the Twomey effect from satellite observations: Issues and perspectives
Evaluation of global simulations of aerosol particle and cloud condensation nuclei number, with implications for cloud droplet formation
Remote Sensing of Droplet Number Concentration in Warm Clouds: A Review of the Current State of Knowledge and Perspectives
Understanding Rapid Adjustments to Diverse Forcing Agents
SALSA2.0: The sectional aerosol module of the aerosol–chemistry–climate model ECHAM6.3.0-HAM2.3-MOZ1.0