Influence of Allee Effect on Extreme Events in Coupled Three Species Systems
Deeptajyoti Sen, Sudeshna Sinha

TL;DR
This study explores how the Allee Effect and coupling influence the emergence of extreme events in a three-species population system, revealing conditions that lead to chaos, population blow-up, and the mitigating role of noise.
Contribution
It demonstrates the combined impact of Allee Effect and coupling on extreme events and chaos in coupled three-species systems, including the noise-induced suppression of such events.
Findings
Coupling and Allee Effect can induce chaos and explosive growth.
Extreme events are more prevalent in predator populations.
Noise suppresses extreme events and unbounded growth.
Abstract
We consider the dynamics of two coupled three-species population patches, incorporating the Allee Effect, focussing on the onset of extreme events in the coupled system. First we show that the interplay between coupling and the Allee effect may change the nature of the dynamics, with regular periodic dynamics becoming chaotic in a range of Allee parameters and coupling strengths. Further, the growth in the vegetation population displays an explosive blow-up beyond a critical value of coupling strength and Allee parameter. Most interestingly, we observe that beyond a threshold of coupling strength and Allee parameter, the population densities of all three species exhibit non-zero probability of yielding extreme events. The emergence of extreme events in the predator populations in the patches is the most prevalent, and the probability of obtaining large deviations in the predator…
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Taxonomy
TopicsNonlinear Dynamics and Pattern Formation · Ecosystem dynamics and resilience · stochastic dynamics and bifurcation
