Global convergence of maixmum light use efficiency using fraction of PAR absorbed by chlorophyll
Yao Zhang1, Xiangming Xiao1, Alessandro Cescatti2, Sebastian Wolf3, Jin Wu4, Xiaocui Wu5, Beniamino Gioli6, Georg Wohlfahrt7, Sha Zhou8, Rainer Steinbrecher9 and Christopher Michael Gough10, (1)University of Oklahoma Norman Campus, Norman, OK, United States, (2)European Commission - Joint Research Centre, Ispra, Italy, (3)ETH Zurich, Department of Environmental Systems Science, Zurich, Switzerland, (4)The University of Hong Kong, School of Biological Sciences, Hong Kong, Hong Kong, (5)University of Oklahoma, Department of Microbiology and Plant Biology, Norman, OK, United States, (6)National Research Council, Biometeorology Institute (IBIMET-CNR),, Florence, Italy, (7)University of Innsbruck, Department of Ecology, Innsbruck, Austria, (8)Tsinghua University, Beijing, China, (9)Karlsruhe Institute of Technol, Garmisch-Partenkirch, Germany, (10)Virginia Commonwealth University, Biology, Richmond, VA, United States