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Turing instability for a ratio-dependent predator-prey model with diffusion
Authors:Shaban Aly  Imbunm Kim
Affiliation:a Department of Mathematics, Seoul National University, Seoul 151-747, Republic of Korea
b Department of Mathematics, Faculty of Science, King Khalid University, Abha, Saudi Arabia
c Interdisciplinary Program in Computational Science and Technology, Seoul National University, Seoul 151-747, Republic of Korea
Abstract:Ratio-dependent predator-prey models have been increasingly favored by field ecologists where predator-prey interactions have to be taken into account the process of predation search. In this paper we study the conditions of the existence and stability properties of the equilibrium solutions in a reaction-diffusion model in which predator mortality is neither a constant nor an unbounded function, but it is increasing with the predator abundance. We show that analytically at a certain critical value a diffusion driven (Turing type) instability occurs, i.e. the stationary solution stays stable with respect to the kinetic system (the system without diffusion). We also show that the stationary solution becomes unstable with respect to the system with diffusion and that Turing bifurcation takes place: a spatially non-homogenous (non-constant) solution (structure or pattern) arises. A numerical scheme that preserve the positivity of the numerical solutions and the boundedness of prey solution will be presented. Numerical examples are also included.
Keywords:Reaction-diffusion system   Population dynamics   Bifurcation   Pattern formation
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