19–21 Aug 2026
Niels Bohr Building
Europe/Copenhagen timezone

Deterministic Collapse and Stochastic Recovery in a Data-Driven Model of the Atlantic Meridional Overturning Circulation

21 Aug 2026, 13:05
20m
Margrethe Bohr Salen (Niels Bohr Building)

Margrethe Bohr Salen

Niels Bohr Building

Jagtvej 155a, Copenhagen

Speaker

Qi-fan Wu

Description

During the last ice-age, temperatures in Greenland have frequently increased and decreased by 10$^{\circ}$C. Detailed studies with climate models suggest that this is caused by collapses and recoveries of the Atlantic Meridional Overturning Circulation (AMOC). The causes of these AMOC transitions are still debated. Here we describe the development of a neural-network based surrogate model of the AMOC. It is trained on 32,000 years of climate model integrations to build a set of stochastic differential equations that emulate the climate models' AMOC behavior. In particular it reproduces the spectra and the asymmetry in the times it takes for the AMOC to recover and collapse, which makes it more realistic than previously published sets of coupled differential equations to study past AMOC transitions. Monte Carlo simulations with this model show that collapses are deterministic, but recoveries are stochastically forced, in partial support of the leading hypotheses surrounding the AMOC transitions.

Author

Co-authors

Dr Dion Häfner (Pasteur Labs, New York, United States) Dr Roman Nuterman (Niels Bohr Institute, University of Copenhagen, Copenhagen, Denmark) Dr Guido Vettoretti (Department of Physical and Environmental Sciences, University of Toronto, Toronto, Canada) Prof. Markus Jochum (Niels Bohr Institute, University of Copenhagen, Copenhagen, Denmark)

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