Area of research
Environmental Engineering · Global and Planetary Change
Research interest
Research interests include Environmental science, Water content, Vegetation (pathology), Precipitation, Ecosystem, and Arid.
The North American Greenhouse Gas Budget: Emissions, Removals, and Integration for CO<sub>2</sub>, CH<sub>4</sub>, and N<sub>2</sub>O (2010–2019): Results From the Second REgional Carbon Cycle Assessment and Processes Study (RECCAP2)
A U.S. Scientific Community Vision for Sustained Earth Observations of Greenhouse Gases to Support Local to Global Action
Global critical soil moisture thresholds of plant water stress
Large global-scale vegetation sensitivity to daily rainfall variability
Vegetation moisture estimation in the Western United States using radiometer-radar-lidar synergy
Temperature Is Likely an Important Omission in Interpreting Vegetation Optical Depth
Adaptation and Response in Drylands (ARID): Community Insights for Scoping a NASA Terrestrial Ecology Field Campaign in Drylands
Remotely Sensed Soil Moisture Can Capture Dynamics Relevant to Plant Water Uptake
Land Surfaces at the Tipping‐Point for Water and Energy Balance Coupling
Thermography captures the differential sensitivity of dryland functional types to changes in rainfall event timing and magnitude
Can Surface Soil Moisture Information Identify Evapotranspiration Regime Transitions?
Tropical surface temperature response to vegetation cover changes and the role of drylands
Observed Landscape Responsiveness to Climate Forcing
Leaf surface water, not plant water stress, drives diurnal variation in tropical forest canopy water content
Patterns of plant rehydration and growth following pulses of soil moisture availability
Land‐Atmosphere Drivers of Landscape‐Scale Plant Water Content Loss
Terrestrial Evaporation and Moisture Drainage in a Warmer Climate
Satellite‐Based Assessment of Land Surface Energy Partitioning–Soil Moisture Relationships and Effects of Confounding Variables
Moisture pulse-reserve in the soil-plant continuum observed across biomes