Accurately quantifying the timing and magnitude of respiration and photosynthesis by high‐latitude ecosystems is important for understanding how a warming climate influences global carbon cycling. Data‐driven estimates of photosynthesis across Arctic regions often rely on satellite‐derived enhanced vegetation index (EVI); we find that satellite observations of solar‐induced chlorophyll fluorescence (SIF) provide a more direct proxy for photosynthesis. We model Alaskan tundra CO2 cycling (2012–2014) according to temperature and shortwave radiation and alternately input EVI or SIF to prescribe the annual seasonal cycle of photosynthesis. We find that EVI‐based seasonality indicates spring “green‐up” to occur 9 days prior to SIF‐based estimate...
Mid-to-high latitude forests play an important role in the terrestrial carbon cycle, but the represe...
Increased photosynthetic activity and enhanced seasonal CO2 exchange of northern ecosystems have bee...
A hyperspectral field sensor (FloX) was installed in Adventdalen (Svalbard, Norway) in 2019 as part ...
Accurately quantifying the timing and magnitude of respiration and photosynthesis by high-latitude e...
Accurately quantifying the timing and magnitude of respiration and photosynthesis by high-latitude e...
High-latitude treeless ecosystems represent spatially highly heterogeneous landscapes with small net...
We introduce the Polar Vegetation Photosynthesis and Respiration Model (PolarVPRM), a remote-sensing...
We introduce the Polar Vegetation Photosynthesis and Respiration Model (PolarVPRM), a remote-sensing...
The Arctic climate is rapidly changing and perhaps the most impactful ecosystem change is the shifti...
We introduce the Polar Vegetation Photosynthesis and Respiration Model (PolarVPRM), a remote-sensing...
High-latitude ecosystems have the capacity to release large amounts of carbon dioxide (CO2) to the a...
High latitude treeless ecosystems represent spatially highly heterogeneous landscapes with small net...
A warming trend larger than the global average is changing high-latitude terrestrial ecosystems. The...
High-latitude treeless ecosystems represent spatially highly heterogeneous landscapes with small net...
Increased photosynthetic activity and enhanced seasonal CO2 exchange of northern ecosystems have bee...
Mid-to-high latitude forests play an important role in the terrestrial carbon cycle, but the represe...
Increased photosynthetic activity and enhanced seasonal CO2 exchange of northern ecosystems have bee...
A hyperspectral field sensor (FloX) was installed in Adventdalen (Svalbard, Norway) in 2019 as part ...
Accurately quantifying the timing and magnitude of respiration and photosynthesis by high-latitude e...
Accurately quantifying the timing and magnitude of respiration and photosynthesis by high-latitude e...
High-latitude treeless ecosystems represent spatially highly heterogeneous landscapes with small net...
We introduce the Polar Vegetation Photosynthesis and Respiration Model (PolarVPRM), a remote-sensing...
We introduce the Polar Vegetation Photosynthesis and Respiration Model (PolarVPRM), a remote-sensing...
The Arctic climate is rapidly changing and perhaps the most impactful ecosystem change is the shifti...
We introduce the Polar Vegetation Photosynthesis and Respiration Model (PolarVPRM), a remote-sensing...
High-latitude ecosystems have the capacity to release large amounts of carbon dioxide (CO2) to the a...
High latitude treeless ecosystems represent spatially highly heterogeneous landscapes with small net...
A warming trend larger than the global average is changing high-latitude terrestrial ecosystems. The...
High-latitude treeless ecosystems represent spatially highly heterogeneous landscapes with small net...
Increased photosynthetic activity and enhanced seasonal CO2 exchange of northern ecosystems have bee...
Mid-to-high latitude forests play an important role in the terrestrial carbon cycle, but the represe...
Increased photosynthetic activity and enhanced seasonal CO2 exchange of northern ecosystems have bee...
A hyperspectral field sensor (FloX) was installed in Adventdalen (Svalbard, Norway) in 2019 as part ...