Early warning skill, extrapolation and tipping for accelerating cascades

Fuente: arXiv
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Main Authors: Ashwin, Peter, Bastiaansen, Robbin, von der Heydt, Anna S., Ritchie, Paul
Format: Preprint
Published: 2025
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author Ashwin, Peter
Bastiaansen, Robbin
von der Heydt, Anna S.
Ritchie, Paul
author_facet Ashwin, Peter
Bastiaansen, Robbin
von der Heydt, Anna S.
Ritchie, Paul
contents We investigate how nonlinear behaviour (both of forcing in time and of the system itself) can affect the skill of early warning signals to predict tipping in (directionally) coupled bistable systems when using measures based on critical slowing down due to the breakdown of extrapolation. We quantify the skill of early warnings with a time horizon using a receiver-operator methodology for ensembles where noise realisations and parameters are varied to explore the role of extrapolation and how it can break down. We highlight cases where this can occur in an accelerating cascade of tipping elements, where very slow forcing of a slowly evolving ``upstream'' system forces a more rapidly evolving ``downstream'' system. If the upstream system crosses a tipping point, this can shorten the timescale of valid extrapolation. In particular, ``downstream-within-upstream'' tipping will typically have warnings only on a timescale comparable to the duration of the upstream tipping process, rather than the timescale of the original forcing.
format Preprint
id arxiv_https___arxiv_org_abs_2506_01981
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Early warning skill, extrapolation and tipping for accelerating cascades
Ashwin, Peter
Bastiaansen, Robbin
von der Heydt, Anna S.
Ritchie, Paul
Chaotic Dynamics
Dynamical Systems
37M10 82C27
We investigate how nonlinear behaviour (both of forcing in time and of the system itself) can affect the skill of early warning signals to predict tipping in (directionally) coupled bistable systems when using measures based on critical slowing down due to the breakdown of extrapolation. We quantify the skill of early warnings with a time horizon using a receiver-operator methodology for ensembles where noise realisations and parameters are varied to explore the role of extrapolation and how it can break down. We highlight cases where this can occur in an accelerating cascade of tipping elements, where very slow forcing of a slowly evolving ``upstream'' system forces a more rapidly evolving ``downstream'' system. If the upstream system crosses a tipping point, this can shorten the timescale of valid extrapolation. In particular, ``downstream-within-upstream'' tipping will typically have warnings only on a timescale comparable to the duration of the upstream tipping process, rather than the timescale of the original forcing.
title Early warning skill, extrapolation and tipping for accelerating cascades
topic Chaotic Dynamics
Dynamical Systems
37M10 82C27
url https://arxiv.org/abs/2506.01981