We consider a mathematical model for the spatio-temporal evolution of two biological species in a competitive situation. Besides diffusing, both species move toward higher concentrations of a chemical substance which is produced by themselves. The resulting system consists of two parabolic equations with Lotka–Volterra-type kinetic terms and chemotactic cross-diffusion, along with an elliptic equation describing the behavior of the chemical. We study the question in how far the phenomenon of competitive exclusion occurs in such a context. We identify parameter regimes for which indeed one of the species dies out asymptotically, whereas the other reaches its carrying capacity in the large time limit
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
The study considers two species competing for one limiting nutrient in an open system like the chemo...
We consider a mathematical model for the spatio-temporal evolution of two biological species in a co...
We study a system of three partial differential equations modelling the spatiotemporal behaviour of ...
We study a system of three partial differential equations modelling the spatiotemporal behaviour of ...
In this paper, we study a system of partial differential equations describing the evolution of a pop...
This paper is devoted to studying the two-species competitive chemotaxis system with signal-dependen...
In this paper we consider a system of three parabolic equations modeling the behavior of two biologi...
In this paper we consider a system of three parabolic equations modeling the behavior of two biologi...
In this article we consider the dynamics of two biological species “u1” and “u2”, secreting the chem...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
In this paper, we consider two species chemotaxis systems with Lotka–Volterra competition reaction t...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
The study considers two species competing for one limiting nutrient in an open system like the chemo...
We consider a mathematical model for the spatio-temporal evolution of two biological species in a co...
We study a system of three partial differential equations modelling the spatiotemporal behaviour of ...
We study a system of three partial differential equations modelling the spatiotemporal behaviour of ...
In this paper, we study a system of partial differential equations describing the evolution of a pop...
This paper is devoted to studying the two-species competitive chemotaxis system with signal-dependen...
In this paper we consider a system of three parabolic equations modeling the behavior of two biologi...
In this paper we consider a system of three parabolic equations modeling the behavior of two biologi...
In this article we consider the dynamics of two biological species “u1” and “u2”, secreting the chem...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
In this paper, we consider two species chemotaxis systems with Lotka–Volterra competition reaction t...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
International audienceIt is known that the competitive exclusion principle holds for a large kind of...
The study considers two species competing for one limiting nutrient in an open system like the chemo...