Observations show an increasing amplitude in the seasonal cycle of CO₂ (ASC) north of 45°N of 56 ± 9.8% over the last 50 years and an increase in vegetation greenness of 7.5–15% in high northern latitudes since the 1980s. However, the causes of these changes remain uncertain. Historical simulations from terrestrial biosphere models in the Multiscale Synthesis and Terrestrial Model Intercomparison Project are compared to the ASC and greenness observations, using the TM3 atmospheric transport model to translate surface fluxes into CO₂ concentrations. We find that the modeled change in ASC is too small but the mean greening trend is generally captured. Modeled increases in greenness are primarily driven by warming, whereas ASC changes are prim...
We characterized decadal changes in the amplitude and shape of the seasonal cycle of atmospheric CO2...
Continuous atmospheric CO₂ monitoring data indicate an increase in the amplitude of seasonal CO₂-cyc...
Terrestrial ecosystems play a significant role in the global carbon cycle and offset a large fractio...
International audienceObservations show an increasing amplitude in the seasonal cycle of CO 2 (ASC) ...
Observations show an increasing amplitude in the seasonal cycle of CO2 (ASC) north of 45°N of 56 ± 9...
Observations show an increasing amplitude in the seasonal cycle of CO2 (ASC) north of 45 degrees N o...
It is well established that the terrestrial biosphere is currently a net carbon sink, driven by incr...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
The enhanced vegetation growth by climate warming plays a pivotal role in amplifying the seasonal cy...
The enhanced vegetation growth by climate warming plays a pivotal role in amplifying the seasonal cy...
The terrestrial biosphere has experienced dramatic changes in recent decades. Estimates of historica...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
No consensus has yet been reached on the major factors driving the observed increase in the seasonal...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
We combine satellite and ground observations during 1950-2011 to study the long-term links between m...
We characterized decadal changes in the amplitude and shape of the seasonal cycle of atmospheric CO2...
Continuous atmospheric CO₂ monitoring data indicate an increase in the amplitude of seasonal CO₂-cyc...
Terrestrial ecosystems play a significant role in the global carbon cycle and offset a large fractio...
International audienceObservations show an increasing amplitude in the seasonal cycle of CO 2 (ASC) ...
Observations show an increasing amplitude in the seasonal cycle of CO2 (ASC) north of 45°N of 56 ± 9...
Observations show an increasing amplitude in the seasonal cycle of CO2 (ASC) north of 45 degrees N o...
It is well established that the terrestrial biosphere is currently a net carbon sink, driven by incr...
Atmospheric monitoring of high northern latitudes (> 40°N) has shown an enhanced seasonal cycle of c...
The enhanced vegetation growth by climate warming plays a pivotal role in amplifying the seasonal cy...
The enhanced vegetation growth by climate warming plays a pivotal role in amplifying the seasonal cy...
The terrestrial biosphere has experienced dramatic changes in recent decades. Estimates of historica...
LetterInternational audienceThe carbon balance of terrestrial ecosystems is particularly sensitive t...
No consensus has yet been reached on the major factors driving the observed increase in the seasonal...
The carbon balance of terrestrial ecosystems is particularly sensitive to climatic changes in autumn...
We combine satellite and ground observations during 1950-2011 to study the long-term links between m...
We characterized decadal changes in the amplitude and shape of the seasonal cycle of atmospheric CO2...
Continuous atmospheric CO₂ monitoring data indicate an increase in the amplitude of seasonal CO₂-cyc...
Terrestrial ecosystems play a significant role in the global carbon cycle and offset a large fractio...