天蓬
光合作用
吸收(声学)
荧光
环境科学
叶绿素荧光
缩放比例
遥感
大气科学
化学
生物系统
光化学
物理
光学
植物
生物
生物化学
地质学
几何学
数学
作者
U. Roscher,Kelvin Acebron,Juliane Bendig,Julie Krämer,Vera Krieger,Juan Quirós-Vargas,Bastian Siegmann,Onno Muller
标识
DOI:10.1109/igarss47720.2021.9554870
摘要
Solar-induced fluorescence (SIF) has become a promising remote sensing parameter to quantify actual photosynthesis beyond the 'greenness' measurements. Despite the great advances in instrumentation to measure canopy SIF, we are still at the beginning of having concepts to quantitatively relate SIF to actual rates of photosynthesis. In this article, we discuss the three elements that are crucial to scale canopy SIF measurements to leaf function, namely (i) canopy structure and its bio-chemical composition determining light absorption, (ii) the functional status of photosynthetic light conversion and fluorescence emission under non-steady state conditions, and (iii) the re-absorption and scattering of the fluorescence signal within the canopy.
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