Targeted experiments with a comprehensive chemistry-climate model are used to demonstrate that seasonality and the location of the peak warming of sea surface temperatures dictate the response of stratospheric water vapor to El Nino. In spring, El Nino events in which sea surface temperature anomalies peak in the eastern Pacific lead to a warming at the tropopause above the warm pool region, and subsequently to more stratospheric water vapor (consistent with previous work). However, in fall and in early winter, and also during El Nino events in which the sea surface temperature anomaly is found mainly in the central Pacific, the response is qualitatively different: temperature changes in the warm pool region are nonuniform and less water va...
Solar signals in the atmosphere and the ocean, especially in tropopause temperatures and lower strat...
The springtime Arctic polar vortex has cooled significantly over the satellite era, with consequence...
The Northern Hemisphere (NH) polar stratospheric response to Central Pacific El Niño (CP-El Niño) ev...
Comprehensive chemistry climate models and satellite data are used to investigate the forcing of var...
Satellite observations and chemistry-climate model experiments are used to understand the zonal stru...
The connection between the dominant mode of interannual variability in the tropical troposphere, El ...
Warm pool El Nino (WPEN) events are characterized by positive sea surface temperature (SST) anomalie...
Abstract. Satellite observations and chemistry-climate model experiments are used to understand the ...
A series of simulations using the NASA Goddard Earth Observing System Chemistry–Climate Model are a...
While the impact of the El Niño–Southern Oscillation (ENSO) on the stratospheric circulation has bee...
Tropopause temperatures (TPTs) control the amount of stratospheric water vapour, which influences ch...
The effect of El Niño-Southern Oscillation (ENSO) on the frequency and character of Northern Hemisph...
A warm bias in tropical tropopause temperature is found in the Met Office Unified Model (MetUM), in ...
A warm bias in tropical tropopause temperature is found in the Met Office Unified Model (MetUM), in ...
Due to the profound impact of El Nino-Southern Oscillation (ENSO) on global climate and weather, ext...
Solar signals in the atmosphere and the ocean, especially in tropopause temperatures and lower strat...
The springtime Arctic polar vortex has cooled significantly over the satellite era, with consequence...
The Northern Hemisphere (NH) polar stratospheric response to Central Pacific El Niño (CP-El Niño) ev...
Comprehensive chemistry climate models and satellite data are used to investigate the forcing of var...
Satellite observations and chemistry-climate model experiments are used to understand the zonal stru...
The connection between the dominant mode of interannual variability in the tropical troposphere, El ...
Warm pool El Nino (WPEN) events are characterized by positive sea surface temperature (SST) anomalie...
Abstract. Satellite observations and chemistry-climate model experiments are used to understand the ...
A series of simulations using the NASA Goddard Earth Observing System Chemistry–Climate Model are a...
While the impact of the El Niño–Southern Oscillation (ENSO) on the stratospheric circulation has bee...
Tropopause temperatures (TPTs) control the amount of stratospheric water vapour, which influences ch...
The effect of El Niño-Southern Oscillation (ENSO) on the frequency and character of Northern Hemisph...
A warm bias in tropical tropopause temperature is found in the Met Office Unified Model (MetUM), in ...
A warm bias in tropical tropopause temperature is found in the Met Office Unified Model (MetUM), in ...
Due to the profound impact of El Nino-Southern Oscillation (ENSO) on global climate and weather, ext...
Solar signals in the atmosphere and the ocean, especially in tropopause temperatures and lower strat...
The springtime Arctic polar vortex has cooled significantly over the satellite era, with consequence...
The Northern Hemisphere (NH) polar stratospheric response to Central Pacific El Niño (CP-El Niño) ev...