Area of research
Global and Planetary Change · Ecology
Research interest
Research interests include Environmental science, Vegetation (pathology), Eddy covariance, Ecosystem, Evapotranspiration, and Carbon cycle.
Proximal remote sensing: an essential tool for bridging the gap between high‐resolution ecosystem monitoring and global ecology
Dominant role of soil moisture in mediating carbon and water fluxes in dryland ecosystems
Challenges and Future Directions in Quantifying Terrestrial Evapotranspiration
Upscaling dryland carbon and water fluxes with artificial neural networks of optical, thermal, and microwave satellite remote sensing
Exceptional heat and atmospheric dryness amplified losses of primary production during the 2020 U.S. Southwest hot drought
Informing Nature‐based Climate Solutions for the United States with the best‐available science
Quantifying the drivers of ecosystem fluxes and water potential across the soil-plant-atmosphere continuum in an arid woodland
Evaluation of vegetation indices and imaging spectroscopy to estimate foliar nitrogen across disparate biomes
Detecting forest response to droughts with global observations of vegetation water content
Improved dryland carbon flux predictions with explicit consideration of water-carbon coupling
Remote sensing of dryland ecosystem structure and function: Progress, challenges, and opportunities
Critical Zone Science in the Anthropocene: Opportunities for biogeographic and ecological theory and praxis to drive earth science integration
Chlorophyll Fluorescence Better Captures Seasonal and Interannual Gross Primary Productivity Dynamics Across Dryland Ecosystems of Southwestern North America
Beyond greenness: Detecting temporal changes in photosynthetic capacity with hyperspectral reflectance data
Vegetation productivity responds to sub‐annual climate conditions across semiarid biomes