Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research focused on Environmental science and Stomatal conductance, with related work in Benchmarking, Carbon cycle, Earth system science. Notable publications include 'The Community Land Model Version 5: Description of New Features, Benchmarking, and Impact of Forcing Uncertainty', 'Recent trends and drivers of regional sources and sinks of carbon dioxide', and 'Managing uncertainty in soil carbon feedbacks to climate change'.
Reimagining Earth in the Earth System
Overcoming barriers to enable convergence research by integrating ecological and climate sciences: the NCAR–NEON system Version 1
Overcoming barriers to enable convergence research by integrating ecological and climate sciences: The NCAR-NEON system Version 1
Supplementary material to "Overcoming barriers to enable convergence research by integrating ecological and climate sciences: The NCAR-NEON system Version 1"
The Community Land Model Version 5: Description of New Features, Benchmarking, and Impact of Forcing Uncertainty
Beyond Static Benchmarking: Using Experimental Manipulations to Evaluate Land Model Assumptions
Comparing optimal and empirical stomatal conductance models for application in Earth system models
Triose phosphate limitation in photosynthesis models reduces leaf photosynthesis and global terrestrial carbon storage
A Comparison of the Diel Cycle of Modeled and Measured Latent Heat Flux During the Warm Season in a Colorado Subalpine Forest
Stomatal Function across Temporal and Spatial Scales: Deep-Time Trends, Land-Atmosphere Coupling and Global Models
Managing uncertainty in soil carbon feedbacks to climate change
A roadmap for improving the representation of photosynthesis in Earth system models
Recent trends and drivers of regional sources and sinks of carbon dioxide
Preindustrial-Control and Twentieth-Century Carbon Cycle Experiments with the Earth System Model CESM1(BGC)
The Influence of Chronic Ozone Exposure on Global Carbon and Water Cycles
Glace: The Global Land-Atmosphere Coupling Experiment Part 2: Analysis
2013cited by 262position: middle
Insights into mechanisms governing forest carbon response to nitrogen deposition: a model–data comparison using observed responses to nitrogen addition
Integrating O <sub>3</sub> influences on terrestrial processes: photosynthetic and stomatal response data available for regional and global modeling
Trends and drivers of regional sources and sinks of carbon dioxide over the past two decades
Predicting photosynthesis and transpiration responses to ozone: decoupling modeled photosynthesis and stomatal conductance
Ozone exposure causes a decoupling of conductance and photosynthesis: implications for the Ball-Berry stomatal conductance model