Exact, steady-state, single-front solutions are constructed for a spatially discrete bistable equation with a piecewise linear reaction term, known as a sawtooth nonlinearity. These solutions are obtained by solving second-order difference equations with variable coefficients, which are linear under certain assumptions on the expected solutions. An algorithmic procedure for constructing solutions in general, for both homogeneous and inhomogeneous diffusion, is obtained using a combination of Jacobi-Operator theory and the Sherman–Morrison formula. The existence of solutions for the difference equation, implies propagation failure of fronts for the corresponding differential-difference equation. The interval of propagation failure, which is ...
We consider traveling wave solutions to a class of differential-difference equations. Our interest i...
This is the published version, also available here: http://dx.doi.org/10.1137/S0036139999357113.We c...
Abstract. We consider traveling wave solutions to spatially discrete reaction-diffusion equations wi...
This is the published version, also available here: http://dx.doi.org/10.1137/100807156.We consider ...
Spatially discrete Nagumo equations have widespread physical applications, including modeling electr...
A second-order difference equation with boundary conditions at infinity is solved, and solutions are...
A second-order difference equation with boundary conditions at infinity is solved, and solutions are...
International audienceWave front propagation failure is investigated in discrete bistable reaction-d...
The paper deals with the existence and properties of frontpropagation between the stationary states ...
We study reaction-diffusion fronts in presence of a localized defect. We consider bistable and monos...
One- and two-component bistable reaction-diffusion systems under external force are considered. The ...
One- and two-component bistable reaction-diffusion systems under external force are considered. The ...
We consider traveling wave solutions to spatially discrete reaction-diffusion equations with nonloca...
We consider the propagation of wave fronts connecting unstable and stable uniform solutions to a dis...
Simple models of defect motion in lattices identify dislocations [1] and cracks [8,9] with discrete ...
We consider traveling wave solutions to a class of differential-difference equations. Our interest i...
This is the published version, also available here: http://dx.doi.org/10.1137/S0036139999357113.We c...
Abstract. We consider traveling wave solutions to spatially discrete reaction-diffusion equations wi...
This is the published version, also available here: http://dx.doi.org/10.1137/100807156.We consider ...
Spatially discrete Nagumo equations have widespread physical applications, including modeling electr...
A second-order difference equation with boundary conditions at infinity is solved, and solutions are...
A second-order difference equation with boundary conditions at infinity is solved, and solutions are...
International audienceWave front propagation failure is investigated in discrete bistable reaction-d...
The paper deals with the existence and properties of frontpropagation between the stationary states ...
We study reaction-diffusion fronts in presence of a localized defect. We consider bistable and monos...
One- and two-component bistable reaction-diffusion systems under external force are considered. The ...
One- and two-component bistable reaction-diffusion systems under external force are considered. The ...
We consider traveling wave solutions to spatially discrete reaction-diffusion equations with nonloca...
We consider the propagation of wave fronts connecting unstable and stable uniform solutions to a dis...
Simple models of defect motion in lattices identify dislocations [1] and cracks [8,9] with discrete ...
We consider traveling wave solutions to a class of differential-difference equations. Our interest i...
This is the published version, also available here: http://dx.doi.org/10.1137/S0036139999357113.We c...
Abstract. We consider traveling wave solutions to spatially discrete reaction-diffusion equations wi...