Area of research
Global and Planetary Change · Water Science and Technology
Research interest
Research interests include Environmental science, Ecosystem, Evapotranspiration, Eddy covariance, Precipitation, and Vegetation (pathology).
Large global-scale vegetation sensitivity to daily rainfall variability
How three-dimensional forest structure regulates the amount and timing of snowmelt across a climatic gradient of snow persistence
Adaptation and Response in Drylands (ARID): Community Insights for Scoping a NASA Terrestrial Ecology Field Campaign in Drylands
Increasing Soil Water Drought in Response to Altered Precipitation Timing Across the Western United States
Upscaling dryland carbon and water fluxes with artificial neural networks of optical, thermal, and microwave satellite remote sensing
Ecohydrological decoupling under changing disturbances and climate
Bark beetle impacts on forest evapotranspiration and its partitioning
Forest density and snowpack stability regulate root zone water stress and percolation differently at two sites with contrasting ephemeral vs. stable seasonal snowpacks
Thermography captures the differential sensitivity of dryland functional types to changes in rainfall event timing and magnitude
Using high frequency digital repeat photography to quantify the sensitivity of a semi-arid grassland ecosystem to the temporal repackaging of precipitation
Exceptional heat and atmospheric dryness amplified losses of primary production during the 2020 U.S. Southwest hot drought
Response of soil carbon dioxide efflux to temporal repackaging of rainfall into fewer, larger events in a semiarid grassland
Five Decades of Observed Daily Precipitation Reveal Longer and More Variable Drought Events Across Much of the Western United States
Satellite solar-induced chlorophyll fluorescence and near-infrared reflectance capture complementary aspects of dryland vegetation productivity dynamics
Dynamic global vegetation models underestimate net CO<sub>2</sub> flux mean and inter-annual variability in dryland ecosystems
Improved dryland carbon flux predictions with explicit consideration of water-carbon coupling
Precipitation temporal repackaging into fewer, larger storms delayed seasonal timing of peak photosynthesis in a semi‐arid grassland
Water Availability Impacts on Evapotranspiration Partitioning
Comparative analysis of water budgets across the U.S. long-term agroecosystem research network
Testing water fluxes and storage from two hydrology configurations within the ORCHIDEE land surface model across US semi-arid sites
Forest cover and topography regulate the thin, ephemeral snowpacks of the semiarid Southwest United States
Montane forest productivity across a semiarid climatic gradient
Remote sensing of dryland ecosystem structure and function: Progress, challenges, and opportunities
Improving Snow Water Equivalent Maps With Machine Learning of Snow Survey and Lidar Measurements
Understanding the relationship between vegetation greenness and productivity across dryland ecosystems through the integration of PhenoCam, satellite, and eddy covariance data
Chlorophyll Fluorescence Better Captures Seasonal and Interannual Gross Primary Productivity Dynamics Across Dryland Ecosystems of Southwestern North America
The AmeriFlux network: A coalition of the willing
<scp>CO</scp><sub>2</sub> exchange and evapotranspiration across dryland ecosystems of southwestern North America
Shrubland carbon sink depends upon winter water availability in the warm deserts of North America
Riparian zones attenuate nitrogen loss following bark beetle‐induced lodgepole pine mortality