What comes after social tipping? Perspectives from transitions towards net-zero

The world is on track to exceed 1.5 °C of warming. To avoid further temperature increase, accelerated action to decarbonize our societies is needed. Scholars claim that this transition requires surpassing social tipping points (STPs). STPs are defined as non-linear processes of transformative change in social systems, where a small perturbation triggers a response that generates self-amplifying changes in behaviors. While research efforts have focused on analyzing triggers to tipping, we have little understanding of the structures and mechanisms that stabilize a new state after the tipping phase. We argue that post-tipping trajectories rarely converge to a single stable state. Instead, they converge to multiple coexisting (including reversed) states that can exist as spatial patterns and need to be designed-in for stability. Combining insights from ecological systems, where phenomena that occur after tipping have been researched, with empirical evidence on social tipping in transitions towards net zero, we shed light on states after tipping and on how they may be stabilized. Four phenomena shape post-tipping trajectories: (i) lock-in through co-adoption of technologies or feedback loops; (ii) the co-existence of states; (iii) the reversibility of sustainable behaviors; and (iv) infrastructure as a stabilizer of co-existing or new states. We found that a systemic approach that combines technological and social levers to create positive feedback is needed to stabilize a future state. We propose three policy design principles to achieve this: (1) prioritize infrastructure that creates positive lock-ins to new technologies; (2) combine deep (social norms) and shallow (co-adoption of technologies) levers; and (3) target network brokers to bridge adopter and non-adopter groups and establish diffusion structures.

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Publication Details

Journal
PLOS Climate
Published
2026-09-30
DOI
https://doi.org/10.1371/journal.pclm.0000982
Primary Topic
Ecosystem dynamics and resilience
Type
article
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article

What comes after social tipping? Perspectives from transitions towards net-zero

Simon Montfort, Maria Hecher, Claudia Rebecca Binder, Simón Ladino Cano et al.
PLOS Climate
Ecosystem dynamics and resilience
article

What comes after social tipping? Perspectives from transitions towards net-zero

Simon Montfort, Maria Hecher, Claudia Rebecca Binder, Simón Ladino Cano, Léonard Léchot, Jair Campfens, Alejandro Gomez, Hanbit Lee
article en

Abstract

The world is on track to exceed 1.5 °C of warming. To avoid further temperature increase, accelerated action to decarbonize our societies is needed. Scholars claim that this transition requires surpassing social tipping points (STPs). STPs are defined as non-linear processes of transformative change in social systems, where a small perturbation triggers a response that generates self-amplifying changes in behaviors. While research efforts have focused on analyzing triggers to tipping, we have little understanding of the structures and mechanisms that stabilize a new state after the tipping phase. We argue that post-tipping trajectories rarely converge to a single stable state. Instead, they converge to multiple coexisting (including reversed) states that can exist as spatial patterns and need to be designed-in for stability. Combining insights from ecological systems, where phenomena that occur after tipping have been researched, with empirical evidence on social tipping in transitions towards net zero, we shed light on states after tipping and on how they may be stabilized. Four phenomena shape post-tipping trajectories: (i) lock-in through co-adoption of technologies or feedback loops; (ii) the co-existence of states; (iii) the reversibility of sustainable behaviors; and (iv) infrastructure as a stabilizer of co-existing or new states. We found that a systemic approach that combines technological and social levers to create positive feedback is needed to stabilize a future state. We propose three policy design principles to achieve this: (1) prioritize infrastructure that creates positive lock-ins to new technologies; (2) combine deep (social norms) and shallow (co-adoption of technologies) levers; and (3) target network brokers to bridge adopter and non-adopter groups and establish diffusion structures.

PLOS ClimateVol. 5(9)
École Polytechnique Fédérale de Lausanne (CH)
Industry, innovation and infrastructure
Openalex Percentile: Top 15%
Ecosystem dynamics and resilience
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