Solar-Induced Fluorescence Responds Earlier than Vegetation Indices to the 2019 North China Plain Drought

Author:

Gao Yongyuan,Zeng Yelu,Voropay Nadezhda N.,Gobin Anne,Huang Jianxi,Su Wei,Li Xuecao,Miao Shuangxi,Liu Zhe,Gao Bingbo,He Yachang,Lu Wendi,Tian Huiren,Zhu Liang,Gao Si,Yan Kai,Hao Dalei

Publisher

Elsevier BV

Reference69 articles.

1. Meta-analysis assessing potential of steady-state chlorophyll fluorescence for remote sensing detection of plant water, temperature and nitrogen stress;Remote Sensing of Environment

2. A multi-temporal and multi-angular approach for systematically retrieving soil moisture and vegetation optical depth from SMOS data;Y Bai;Remote Sensing of Environment,2022

3. Strengthening agricultural decisions in countries at risk of food insecurity: The GEOGLAM Crop Monitor for Early Warning;I Becker-Reshef;Remote Sensing of Environment,2020

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