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A Degenerate Bifurcation Perspective on High Sensitivity in a Modified Leslie-Gower Model with Additive Allee Effect
Xiaoling Wang1, Kuilin Wu1, Lan Zou2
1School of Mathematics and Statistics, Guizhou University, Guiyang, 550025, People's Republic of China.
Abstract:
The population dynamics in a modified Leslie-Gower model with an additive Allee effect are highly sensitive to both parameters and initial population densities, leading to outcomes ranging from coextinction to sustained multistable steady states. This work links this sensitivity to complicated bifurcations. We establish the existence of a codimension 4 nilpotent cusp and a corresponding degenerate Bogdanov-Takens bifurcation with codimension 4, which critically shape the system's response to parameter changes. Moreover, we detected that the number of limit cycles bifurcated from Hopf bifurcation can be as high as five-a phenomenon scarcely documented in previous ecological studies, thereby inducing a pronounced dependence of oscillatory regimes on initial conditions. Numerical simulations confirming heteroclinic loops and multiple limit cycles provide consistent support for the theoretical analysis.
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