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Cascade tipping, cascade hopping and indirect tipping in ecological systems
Ayanava Basak1, Syamal Kumar Dana1,2, Nandadulal Bairagi1
1Jadavpur University, Centre for Mathematical Biology and Ecology, Department of Mathematics, Kolkata-700032, India.
Physical Review. E
|November 18, 2025
Summary
Ecological systems can abruptly transition, or tip, due to environmental changes. This study reveals indirect tipping, where a third population shifts unexpectedly even if the first two do not, highlighting coupled system vulnerability.
Area of Science:
- Ecology
- Complex Systems
- Mathematical Biology
Background:
- Tipping points represent abrupt shifts in system behavior.
- Coupled ecological systems are susceptible to sudden transitions.
Purpose of the Study:
- To demonstrate tipping phenomena in a three-species coupled ecological model.
- To investigate the role of environmental changes, coupling strength, and nonlinearity in driving transitions.
- To introduce and analyze indirect tipping.
Main Methods:
- Utilized a unidirectional, three-species coupled model (bacteria, phytoplankton, fish).
- Simulated ramp-like parameter drift in the first subsystem.
- Analyzed tipping phenomena across varying coupling strengths.
Main Results:
- Identified three tipping phenomena: tipping cascade, cascade hopping, and indirect tipping.
- Demonstrated indirect tipping, where the tertiary subsystem tips independently.
- Showcased the vulnerability of coupled systems to minor parameter changes.
Conclusions:
- Indirect tipping is a critical phenomenon in coupled ecological systems.
- Even seemingly stable subsystems can trigger unexpected shifts in connected populations.
- Close monitoring of all components in coupled systems is essential, even those appearing stable.
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