This study uses the droughts of 2011 in Texas and 2012 over the central Great Plains as case studies to explore the potential of satellite‐observed solar‐induced chlorophyll fluorescence (SIF) for monitoring drought dynamics. We find that the spatial patterns of negative SIF anomalies from the Global Ozone Monitoring Experiment 2 (GOME‐2) closely resembled drought intensity maps from the U.S. Drought Monitor for both events. The drought‐induced suppression of SIF occurred throughout 2011 but was exacerbated in summer in the Texas drought. This event was characterized by a persistent depletion of root zone soil moisture caused by yearlong below‐normal precipitation. In contrast, for the central Great Plains drought, warmer temperatures and r...
Climate change amplifies the intensity and occurrence of dry periods leading to drought stress in ve...
Recently, Yang et al. (2018) reported a decrease in solarinduced chlorophyll fluorescence (SIF) duri...
During droughts, plants have to make a trade-off between min- imizing water loss and allowing CO2 up...
This study uses the droughts of 2011 in Texas and 2012 over the central Great Plains as case studies...
This study uses the droughts of 2011 in Texas and 2012 over the central Great Plains as case studies...
We examined the relationship between satellite measurements of solar-induced chlorophyll fluorescenc...
We examined the relationship between satellite measurements of solar-induced chlorophyll fluorescenc...
Solar‐induced chlorophyll fluorescence (SIF) could provide information on plant physiological respon...
Solar-induced chlorophyll fluorescence (SIF) has been shown to be a powerful proxy for photosynthesi...
Satellite-estimated solar-induced chlorophyll fluorescence (SIF) is proven to be an effective indica...
Satellite-estimated solar-induced chlorophyll fluorescence (SIF) is proven to be an effective indica...
Around the world, the increasing drought, which is exacerbated by climate change, has significant im...
Our ability to understand how global vegetation uptakes atmospheric CO2 is crucial for closing the E...
Climate change amplifies the intensity and occurrence of dry periods leading to drought stress in ve...
With the increasing trend of global warming, drought events frequently occur, which have an impact o...
Climate change amplifies the intensity and occurrence of dry periods leading to drought stress in ve...
Recently, Yang et al. (2018) reported a decrease in solarinduced chlorophyll fluorescence (SIF) duri...
During droughts, plants have to make a trade-off between min- imizing water loss and allowing CO2 up...
This study uses the droughts of 2011 in Texas and 2012 over the central Great Plains as case studies...
This study uses the droughts of 2011 in Texas and 2012 over the central Great Plains as case studies...
We examined the relationship between satellite measurements of solar-induced chlorophyll fluorescenc...
We examined the relationship between satellite measurements of solar-induced chlorophyll fluorescenc...
Solar‐induced chlorophyll fluorescence (SIF) could provide information on plant physiological respon...
Solar-induced chlorophyll fluorescence (SIF) has been shown to be a powerful proxy for photosynthesi...
Satellite-estimated solar-induced chlorophyll fluorescence (SIF) is proven to be an effective indica...
Satellite-estimated solar-induced chlorophyll fluorescence (SIF) is proven to be an effective indica...
Around the world, the increasing drought, which is exacerbated by climate change, has significant im...
Our ability to understand how global vegetation uptakes atmospheric CO2 is crucial for closing the E...
Climate change amplifies the intensity and occurrence of dry periods leading to drought stress in ve...
With the increasing trend of global warming, drought events frequently occur, which have an impact o...
Climate change amplifies the intensity and occurrence of dry periods leading to drought stress in ve...
Recently, Yang et al. (2018) reported a decrease in solarinduced chlorophyll fluorescence (SIF) duri...
During droughts, plants have to make a trade-off between min- imizing water loss and allowing CO2 up...