© 2020 IOP Publishing Ltd & London Mathematical Society. We study travelling wave solutions, u = U(x - ct), of the nonlocal Fisher- KPP equation in one spatial dimension, dimension, (Display equation presented), with D = 1 and c = 1, where = = u is the spatial convolution of the population density, u(x, t), with a continuous, symmetric, strictly positive kernel, =(x), which is decreasing for x > 0 and has a finite derivative as x = 0+, normalized so that = = -= =(x)dx = 1. In addition, we restrict our attention to kernels for which the spatially-uniform steady state u = 1 is stable, so that travelling wave solutions have U = 1 as x - ct → - and U = 0 as x - ct→ for c > 0. We use the formal method of matched asymptotic expansions and numer...
We examine travelling wave solutions of the partial differential equation u_t = u_xx + u(1 − u * φ) ...
We study propagation over R^d of the solution to a doubly nonlocal reaction-diffusion equation of th...
AbstractWhen degenerate nonlinear diffusion is introduced into the Fisher equation, giving ut = (uux...
We study non-negative travelling wave solutions, u ≡ U (x − ct) with constant wavespeed c > 0, of th...
We study non-negative travelling wave solutions, u ≡ U (x − ct) with constant wavespeed c > 0, of th...
We study traveling waves for a reaction-diffusion equation with nonlocal anisotropic diffusion and a...
Traveling waves for the nonlocal Fisher Equation can exhibit much more complex behaviour than for th...
We consider the Fisher-KPP equation with a non-local interaction term. We establish a condition on t...
This note investigates the properties of the traveling waves solutions of the nonlocal Fisher equati...
We consider a reaction-diffusion equation with nonlocal anisotropic diffusion and a linear combinati...
International audienceTraveling waves for the nonlocal Fisher Equation can exhibit much more complex...
International audienceTraveling waves for the nonlocal Fisher Equation can exhibit much more complex...
Traveling waves for the nonlocal Fisher Equation can exhibit much more complex behaviour t...
This note investigates the properties of the traveling waves solutions of the nonlocal Fisher equati...
The Fisher-Kolmogorov-Petrovsky-Piskunov (KPP) model, and generalizations thereof, involves simple r...
We examine travelling wave solutions of the partial differential equation u_t = u_xx + u(1 − u * φ) ...
We study propagation over R^d of the solution to a doubly nonlocal reaction-diffusion equation of th...
AbstractWhen degenerate nonlinear diffusion is introduced into the Fisher equation, giving ut = (uux...
We study non-negative travelling wave solutions, u ≡ U (x − ct) with constant wavespeed c > 0, of th...
We study non-negative travelling wave solutions, u ≡ U (x − ct) with constant wavespeed c > 0, of th...
We study traveling waves for a reaction-diffusion equation with nonlocal anisotropic diffusion and a...
Traveling waves for the nonlocal Fisher Equation can exhibit much more complex behaviour than for th...
We consider the Fisher-KPP equation with a non-local interaction term. We establish a condition on t...
This note investigates the properties of the traveling waves solutions of the nonlocal Fisher equati...
We consider a reaction-diffusion equation with nonlocal anisotropic diffusion and a linear combinati...
International audienceTraveling waves for the nonlocal Fisher Equation can exhibit much more complex...
International audienceTraveling waves for the nonlocal Fisher Equation can exhibit much more complex...
Traveling waves for the nonlocal Fisher Equation can exhibit much more complex behaviour t...
This note investigates the properties of the traveling waves solutions of the nonlocal Fisher equati...
The Fisher-Kolmogorov-Petrovsky-Piskunov (KPP) model, and generalizations thereof, involves simple r...
We examine travelling wave solutions of the partial differential equation u_t = u_xx + u(1 − u * φ) ...
We study propagation over R^d of the solution to a doubly nonlocal reaction-diffusion equation of th...
AbstractWhen degenerate nonlinear diffusion is introduced into the Fisher equation, giving ut = (uux...