A predator–prey system with prey social behavior and generalized Holling III functional response: Role of predator‐taxis on spatial patterns

Author:

Souna Fethi1ORCID,Tiwari Pankaj Kumar2,Belabbas Mustapha3,Menacer Youssaf4

Affiliation:

1. Laboratory of Biomathematics, Department of Mathematics Djillali Liabés University Sidi Bel Abbes Algeria

2. Department of Basic Science and Humanities Indian Institute of Information Technology Bhagalpur India

3. Laboratory of Statistics and Stochastic Processes University Djillali Liabés Sidi Bel Abbes Algeria

4. Laboratory of Mathematical Biology University of Houston Houston Texas USA

Abstract

In this paper, we investigate the intrinsic impact of the predator‐taxis coefficient on the formation of spatial patterns in a predator–prey system with prey social behavior subject to Neumann boundary conditions. By treating the predator‐taxis coefficient as a potential critical parameter for Turing bifurcation, we observe that the Turing pattern is fully captured by three distinct critical thresholds. Meanwhile, utilizing weakly nonlinear analysis and the amplitude equation, we establish the direction of Turing bifurcation. Our mathematical analysis reveals that the inclusion of the predator‐taxis coefficient in the predator–prey system may lead to the emergence of either subcritical or supercritical Turing bifurcation. Our numerical experiments confirm the theoretical findings and exhibit various spatial patterns with different values of predator‐taxis coefficients.

Funder

Direction Générale de la Recherche Scientifique et du Développement Technologique

Publisher

Wiley

Subject

General Engineering,General Mathematics

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