Understanding the mid-latitude atmospheric circulation response to CO2 forcing is challenging and complex due to the strong internal variability and the multiple potential CO2-induced effects. While a significant poleward shift of the jet is projected in summer, changes remain uncertain in winter. In this study, we investigate the boreal winter extratropical jet response to an abrupt quadrupling of atmospheric CO2 in the CMIP6-generation global climate model CNRM-CM6-1. First, we show that the model performs better than the former generation CNRM-CM5 model in representing the atmospheric dynamics in the northern extratropics. Then, when atmospheric CO2 is quadrupled, CNRM-CM6-1 exhibits a strengthening and upward shift of the jet. A polewar...
The Earth's atmosphere is expected to warm in response to increasing atmospheric concentrations of g...
Poleward shifts of the extratropical atmospheric circulation are a common response to CO2 forcing in...
The Earth's atmosphere is expected to warm in response to increasing atmospheric concentrations of g...
Understanding the mid-latitude atmospheric circulation response to CO2 forcing is challenging and co...
Understanding the mid-latitude atmospheric circulation response to CO2 forcing is challenging and co...
The Southern Hemisphere eddy-driven jet stream has been shown to move poleward in climate models in ...
This work documents how the midlatitude, eddy-driven jets respond to climate change using model outp...
In Coupled Model Intercomparison Project Phase 5 (CMIP5) models, the zonal-mean tropospheric circula...
The robustness of stratospheric circulation changes under increased concentrations of carbon dioxide...
The robustness of stratospheric circulation changes under increased concentrations of carbon dioxide...
Midlatitude atmospheric circulation is projected to shift poleward, yet the Northern Hemisphere jet ...
Glacial climate is marked by abrupt, millennial-scale climate changes known as Dansgaard–Oeschger cy...
Global climate models indicate that the Southern Hemispheric (SH) jet stream shifts poleward in resp...
The Earth's atmosphere is expected to warm in response to increasing atmospheric concentrations of g...
The steady-state extratropical atmospheric response to thermal forcing is investigated in a simple a...
The Earth's atmosphere is expected to warm in response to increasing atmospheric concentrations of g...
Poleward shifts of the extratropical atmospheric circulation are a common response to CO2 forcing in...
The Earth's atmosphere is expected to warm in response to increasing atmospheric concentrations of g...
Understanding the mid-latitude atmospheric circulation response to CO2 forcing is challenging and co...
Understanding the mid-latitude atmospheric circulation response to CO2 forcing is challenging and co...
The Southern Hemisphere eddy-driven jet stream has been shown to move poleward in climate models in ...
This work documents how the midlatitude, eddy-driven jets respond to climate change using model outp...
In Coupled Model Intercomparison Project Phase 5 (CMIP5) models, the zonal-mean tropospheric circula...
The robustness of stratospheric circulation changes under increased concentrations of carbon dioxide...
The robustness of stratospheric circulation changes under increased concentrations of carbon dioxide...
Midlatitude atmospheric circulation is projected to shift poleward, yet the Northern Hemisphere jet ...
Glacial climate is marked by abrupt, millennial-scale climate changes known as Dansgaard–Oeschger cy...
Global climate models indicate that the Southern Hemispheric (SH) jet stream shifts poleward in resp...
The Earth's atmosphere is expected to warm in response to increasing atmospheric concentrations of g...
The steady-state extratropical atmospheric response to thermal forcing is investigated in a simple a...
The Earth's atmosphere is expected to warm in response to increasing atmospheric concentrations of g...
Poleward shifts of the extratropical atmospheric circulation are a common response to CO2 forcing in...
The Earth's atmosphere is expected to warm in response to increasing atmospheric concentrations of g...