Area of research
Atmospheric Science · Environmental Engineering
Research interest
Research interests include Environmental science, Water content, Vegetation (pathology), Satellite, Climatology, and Remote sensing.
SMAP Validation Experiment 2019–2022 (SMAPVEX19–22): Field Campaign to Improve Soil Moisture and Vegetation Optical Depth Retrievals in Temperate Forests
Seasonal stabilization effects slowed the greening of the Northern Hemisphere over the last two decades
Continuity between NASA MODIS Collection 6.1 and VIIRS Collection 2 land products
Seasonal CO2 amplitude in northern high latitudes
Widespread spring phenology effects on drought recovery of Northern Hemisphere ecosystems
Exceptional heat and atmospheric dryness amplified losses of primary production during the 2020 U.S. Southwest hot drought
<scp>Pan‐Arctic</scp> soil moisture control on tundra carbon sequestration and plant productivity
Timing and Order of Extreme Drought and Wetness Determine Bioclimatic Sensitivity of Tree Growth
A Coupled River Basin‐Urban Hydrological Model (DRIVE‐Urban) for Real‐Time Urban Flood Modeling
Earlier snowmelt may lead to late season declines in plant productivity and carbon sequestration in Arctic tundra ecosystems
Validation of Soil Moisture Data Products From the NASA SMAP Mission
Satellite Flood Inundation Assessment and Forecast Using SMAP and Landsat
Evaluation of Surface Melt on the Greenland Ice Sheet Using SMAP <i>L</i>-Band Microwave Radiometry
Globally Consistent Patterns of Asynchrony in Vegetation Phenology Derived From Optical, Microwave, and Fluorescence Satellite Data
Improved Constraints on Northern Extratropical CO <sub>2</sub> Fluxes Obtained by Combining Surface‐Based and Space‐Based Atmospheric CO <sub>2</sub> Measurements
Retrieving the global distribution of the threshold of wind erosion from satellite data and implementing it into the Geophysical Fluid Dynamics Laboratory land–atmosphere model (GFDL AM4.0/LM4.0)
Satellite-Based Evapotranspiration in Hydrological Model Calibration
The Contributions of Gauge-Based Precipitation and SMAP Brightness Temperature Observations to the Skill of the SMAP Level-4 Soil Moisture Product
Detecting Greenland Melt with the SMAP L-band Radiometer
Large loss of CO2 in winter observed across the northern permafrost region
Version 4 of the SMAP Level‐4 Soil Moisture Algorithm and Data Product
Remote Sensing of Environmental Changes in Cold Regions: Methods, Achievements and Challenges
Author Correction: Large loss of CO2 in winter observed across the northern permafrost region
Chlorophyll Fluorescence Better Captures Seasonal and Interannual Gross Primary Productivity Dynamics Across Dryland Ecosystems of Southwestern North America
Integrating snow science and wildlife ecology in Arctic-boreal North America
Soil Moisture Active Passive (SMAP) Project Assessment Report for Version 4 of the L4_SM Data Product
Lirias (KU Leuven) 2018cited by 27position: last
Assessment of the SMAP Level-4 Surface and Root-Zone Soil Moisture Product Using In Situ Measurements
Global Assessment of the SMAP Level-4 Surface and Root-Zone Soil Moisture Product Using Assimilation Diagnostics
Estimating Global Ecosystem Isohydry/Anisohydry Using Active and Passive Microwave Satellite Data
Photosynthetic seasonality of global tropical forests constrained by hydroclimate