Transition Probabilities of Noise-induced Transitions of the Atlantic Ocean Circulation

Publication date

2019-12-30

Authors

Castellana, DanieleISNI 0000000506344928
Baars, S.ORCID 0000-0002-4228-6479ISNI 0000000503362653
Wubs, Fred W.
Dijkstra, HenkISNI 0000000023267948

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Article
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Abstract

The Atlantic Meridional Overturning Circulation (AMOC) is considered to be a tipping element of the climate system. As it cannot be excluded that the AMOC is in a multiple regime, transitions can occur due to atmospheric noise between the present-day state and a weaker AMOC state. For the first time, we here determine estimates of the transition probability of noise-induced transitions of the AMOC, within a certain time period, using a methodology from large deviation theory. We find that there are two types of transitions, with a partial or full collapse of the AMOC, having different transition probabilities. For the present-day state, we estimate the transition probability of the partial collapse over the next 100 years to be about 15%, with a high sensitivity of this probability to the surface freshwater noise amplitude.

Keywords

AMOC, transition probabilities, collapse, noise, TAMS, rare event simulation, splitting techniques, power grids, reliability, tipping point, SDG 13 - Climate Action

Citation

Castellana, D, Baars, S, Wubs, F W & Dijkstra, H A 2019, 'Transition Probabilities of Noise-induced Transitions of the Atlantic Ocean Circulation', Scientific Reports, vol. 9, 20284, pp. 1-7. https://doi.org/10.1038/s41598-019-56435-6