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Remote Sensing of Solar-Induced Chlorophyll Fluorescence at Atmospheric Oxygen Absorption Band Around 760 nm and Simulation of That Absorption in Laboratory

机译:760nm左右大气氧吸收带的太阳叶绿素荧光遥感及其模拟

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The present work establishes that the usual method of remote measurement of vegetation reflectance can also detect steady-state solar-induced fluorescence of vegetation. It identifies the hyperspectral signature of chlorophyll fluorescence as a small spike on the reflectance spectral curve of vegetation at the oxygen absorption $(hbox{O}_{2}$–$ hbox{A})$ band around 760 nm. It justifies the origin of the fluorescence signature with both leaf- and pigment-level studies and quantifies it with the following: 1) presence/absence of chlorophyll in leaves; 2) varying concentration of chlorophyll in solution; 3) time of exposure under illumination; and 4) correctness of the calibration of leaf reflectance with respect to the standard white surface. The $ hbox{O}_{2}$–$hbox{A}$ band is detectable in solar radiation measured on Earth because of light absorption by the atmospheric oxygen column. This paper suggests an experimental technique to simulate that absorption in laboratory also. Oxygen gas compressed at high pressure can produce the oxygen absorption band artificially at indoor condition.
机译:目前的工作表明,对植被反射率进行远程测量的常规方法也可以检测到稳态太阳光诱导的植被荧光。它将叶绿素荧光的高光谱特征识别为在760 nm附近的氧吸收$(hbox {O} _ {2} $ – $ hbox {A})$波段上植被反射光谱曲线上的一个小尖峰。它通过叶和色素水平的研究来证明荧光标记的起源,并通过以下方法对其进行定量:1)叶中是否存在叶绿素; 2)改变溶液中叶绿素的浓度; 3)在光照下的曝光时间; 4)相对于标准白色表面的叶片反射率校准的正确性。 $ hbox {O} _ {2} $ – $ hbox {A} $波段在地球上测量到的太阳辐射中可检测到,这是由于大气氧柱吸收了光。本文还提出了一种在实验室中模拟该吸收的实验技术。高压压缩的氧气在室内条件下会人工产生氧气吸收带。

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