Litcius/Paper detail

Coupled stratosphere-troposphere-Atlantic multidecadal oscillation and its importance for near-future climate projection

Nour‐Eddine Omrani, Noel Keenlyside, Katja Matthes, Lina Boljka, Davide Zanchettin, Johann Jungclaus, Sandro W. Lubis

2022npj Climate and Atmospheric Science64 citationsDOIOpen Access PDF

Abstract

Abstract Northern Hemisphere (NH) climate has experienced various coherent wintertime multidecadal climate trends in stratosphere, troposphere, ocean, and cryosphere. However, the overall mechanistic framework linking these trends is not well established. Here we show, using long-term transient forced coupled climate simulation, that large parts of the coherent NH-multidecadal changes can be understood within a damped coupled stratosphere/troposphere/ocean-oscillation framework. Wave-induced downward propagating positive stratosphere/troposphere-coupled Northern Annular Mode (NAM) and associated stratospheric cooling initiate delayed thermohaline strengthening of Atlantic overturning circulation and extratropical Atlantic-gyres. These increase the poleward oceanic heat transport leading to Arctic sea-ice melting, Arctic warming amplification, and large-scale Atlantic warming, which in turn initiates wave-induced downward propagating negative NAM and stratospheric warming and therefore reverse the oscillation phase. This coupled variability improves the performance of statistical models, which project further weakening of North Atlantic Oscillation, North Atlantic cooling and hiatus in wintertime North Atlantic-Arctic sea-ice and global surface temperature just like the 1950s–1970s.

Topics & Concepts

Atlantic multidecadal oscillationClimatologyStratosphereNorth Atlantic oscillationThermohaline circulationTroposphereExtratropical cycloneArctic oscillationEnvironmental scienceArctic dipole anomalyNorthern HemisphereSudden stratospheric warmingClimate modelArctic sea ice declineAtmospheric sciencesNorth Atlantic Deep WaterGeologyClimate changeArctic ice packSea iceOceanographyPolar vortexDrift iceClimate variability and modelsArctic and Antarctic ice dynamicsMeteorological Phenomena and Simulations