Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Climate Change and Geoengineering, Atmospheric Ozone and Climate, Space exploration and regulation, and Atmospheric and Environmental Gas Dynamics.
Key Gaps in Models' Physical Representation of Climate Intervention and Its Impacts
Hemispherically symmetric strategies for stratospheric aerosol injection
G6-1.5K-SAI: a new Geoengineering Model Intercomparison Project (GeoMIP) experiment integrating recent advances in solar radiation modification studies
Identifying Climate Impacts From Different Stratospheric Aerosol Injection Strategies in UKESM1
Different Strategies of Stratospheric Aerosol Injection Would Significantly Affect Climate Extreme Mitigation
High‐Latitude Stratospheric Aerosol Injection to Preserve the Arctic
Climate response to off-equatorial stratospheric sulfur injections in three Earth system models – Part 1: Experimental protocols and surface changes
Climate response to off-equatorial stratospheric sulfur injections in three Earth system models – Part 2: Stratospheric and free-tropospheric response
Injection strategy – a driver of atmospheric circulation and ozone response to stratospheric aerosol geoengineering
Comparison of UKESM1 and CESM2 simulations using the same multi-target stratospheric aerosol injection strategy
Climate, Variability, and Climate Sensitivity of “Middle Atmosphere” Chemistry Configurations of the Community Earth System Model Version 2, Whole Atmosphere Community Climate Model Version 6 (CESM2(WACCM6))
Quantifying the Efficiency of Stratospheric Aerosol Geoengineering at Different Altitudes
Stratospheric Aerosol Injection Can Reduce Risks to Antarctic Ice Loss Depending on Injection Location and Amount
Scenarios for modeling solar radiation modification
Assessing Responses and Impacts of Solar climate intervention on the Earth system with stratospheric aerosol injection (ARISE-SAI): protocol and initial results from the first simulations
Changes in Hadley circulation and intertropical convergence zone under strategic stratospheric aerosol geoengineering
Climate, variability, and climate sensitivity of “Middle Atmosphere” chemistry configurations of the Community Earth System Model Version 2, Whole Atmosphere Community Climate Model Version 6 (CESM2(WACCM6))
Identifying the sources of uncertainty in climate model simulations of solar radiation modification with the G6sulfur and G6solar Geoengineering Model Intercomparison Project (GeoMIP) simulations
Is Turning Down the Sun a Good Proxy for Stratospheric Sulfate Geoengineering?
High‐Latitude Stratospheric Aerosol Geoengineering Can Be More Effective if Injection Is Limited to Spring
Comparing different generations of idealized solar geoengineering simulations in the Geoengineering Model Intercomparison Project (GeoMIP)
Potential impacts of stratospheric aerosol injection on drought risk managements over major river basins in Africa
Sensitivity of Total Column Ozone to Stratospheric Sulfur Injection Strategies
Reaching 1.5 and 2.0 °C global surface temperature targets using stratospheric aerosol geoengineering
Uncertainty and the basis for confidence in solar geoengineering research
Reduced Poleward Transport Due to Stratospheric Heating Under Stratospheric Aerosols Geoengineering
Seasonally Modulated Stratospheric Aerosol Geoengineering Alters the Climate Outcomes
What goes up must come down: impacts of deposition in a sulfate geoengineering scenario
The Regional Hydroclimate Response to Stratospheric Sulfate Geoengineering and the Role of Stratospheric Heating
Comparing Surface and Stratospheric Impacts of Geoengineering With Different SO<sub>2</sub> Injection Strategies