The seasonal cycle of satellite chlorophyll fluorescence observations and its relationship to vegetation phenology and ecosystem atmosphere carbon exchange

Author:

Joiner J.,Yoshida Y.,Vasilkov A.P.,Schaefer K.,Jung M.,Guanter L.,Zhang Y.,Garrity S.,Middleton E.M.,Huemmrich K.F.,Gu L.,Belelli Marchesini L.

Funder

NASA Carbon Cycle Science program

U.S. Department of Energy, Biological and Environmental Research, Terrestrial Carbon Program

CFCAS

NSERC

BIOCAP

Environment Canada

NRCan

CarboEuropeIP

FAOGTOSTCO

iLEAPS

Max Planck Institute for Biogeochemistry

National Science Foundation

University of Tuscia

Wageningen University CALM Group (Climate change and Adaptive Land and Water Management)

Universit Laval

U.S. Department of Energy

National Science Foundation (NSF)

U.S. Department of Agriculture (USDA)

U.S. Department of Energy (DOE)

Biological and Environmental Research Program (BER), U.S. DOE

BER

NOAA

NASA

NASA Terrestrial Ecology Program

NSF Biocomplexity Program

Australian Research Council

Publisher

Elsevier BV

Subject

Computers in Earth Sciences,Geology,Soil Science

Reference124 articles.

1. Evaluation of remote sensing of vegetation fluorescence by the analysis of diurnal cycles;Amoros-Lopez;International Journal of Remote Sensing,2008

2. Predicting the onset of net carbon uptake by deciduous forests with soil temperature and climate data: A synthesis of FLUXNET data;Baldocchi;International Journal of Biometeorology,2004

3. FLUXNET: A new tool to study the temporal and spatial variability of ecosystem-scale carbon dioxide, water vapor, and energy flux densities;Baldocchi;Bulleting of the American Meteorological Society,2001

4. NACP site: Tower meteorology, flux observations with uncertainty, and ancillary data, data set;Barr,2013

5. Use of change-point detection for friction-threshold evaluation in eddy-covariance studies;Barr;Agricultural and Forest Meteorology,2013

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