Area of research
Oceanography · Global and Planetary Change
Research interest
Research interests include Oceanographic and Atmospheric Processes, Climate variability and models, Geology and Paleoclimatology Research, and Astro and Planetary Science.
Energetic Constraints on Ocean Circulations of Icy Ocean Worlds
Atlantic circulation change still uncertain
The Effect of Ocean Salinity on Climate and Its Implications for Earth's Habitability
On Icy Ocean Worlds, Size Controls Ice Shell Geometry
Diagnosing Scale-Dependent Energy Cycles in a High-Resolution Isopycnal Ocean Model
Ocean Circulation on Enceladus with a High- versus Low-salinity Ocean
Quantifying Energy Balance Regimes in the Modern Climate, Their Link to Lapse Rate Regimes, and Their Response to Warming
Slower nutrient stream suppresses Subarctic Atlantic Ocean biological productivity in global warming
Overturning Circulation Pathways in a Two-Basin Ocean Model
The GFDL Global Ocean and Sea Ice Model OM4.0: Model Description and Simulation Features
Toward an Energetically Consistent, Resolution Aware Parameterization of Ocean Mesoscale Eddies
Global cooling linked to increased glacial carbon storage via changes in Antarctic sea ice
Antarctic Sea Ice Control on the Depth of North Atlantic Deep Water
Diagnosing Subgrid Mesoscale Eddy Fluxes With and Without Topography
Transient versus Equilibrium Response of the Ocean’s Overturning Circulation to Warming
Connecting Antarctic sea ice to deep‐ocean circulation in modern and glacial climate simulations
Glacial ocean circulation and stratification explained by reduced atmospheric temperature
The Effect of Southern Ocean Surface Buoyancy Loss on the Deep-Ocean Circulation and Stratification
The Turbulent Circulation of a Snowball Earth Ocean
Eddy Phase Speeds in a Two-Layer Model of Quasigeostrophic Baroclinic Turbulence with Applications to Ocean Observations
Parameterization of eddy fluxes based on a mesoscale energy budget
Analytic radiative‐advective equilibrium as a model for high‐latitude climate
Energy budget-based backscatter in an eddy permitting primitive equation model
The glacial mid‐depth radiocarbon bulge and its implications for the overturning circulation
Conceptual model analysis of the influence of temperature feedbacks on polar amplification
Antarctic sea ice control on ocean circulation in present and glacial climates
CAREER: Moving Beyond Equilibrium: Understanding the Ocean's Overturning Circulation in a Changing Climate
Collaborative Research: Ocean Transport and Eddy Energy
Collaborative Research: Energetically consistent, resolution aware, parameterization of meso-scale eddies in the ocean
Collaborative Research: An Ocean Tale of Two Climates: Modern and Last Glacial Maximum