info:eu-repo/semantics/article
First-passage times for pattern formation in nonlocal partial differential equations
Fecha
2015-10Registro en:
Caceres Garcia Faure, Manuel Osvaldo; Fuentes, Miguel Angel; First-passage times for pattern formation in nonlocal partial differential equations; American Physical Society; Physical Review E: Statistical, Nonlinear and Soft Matter Physics; 92; 4; 10-2015; 1-14
1539-3755
CONICET Digital
CONICET
Autor
Caceres Garcia Faure, Manuel Osvaldo
Fuentes, Miguel Angel
Resumen
We describe the lifetimes associated with the stochastic evolution from an unstable uniform state to a patterned one when the time evolution of the field is controlled by a nonlocal Fisher equation. A small noise is added to the evolution equation to define the lifetimes and to calculate the mean first-passage time of the stochastic field through a given threshold value, before the patterned steady state is reached. In order to obtain analytical results we introduce a stochastic multiscale perturbation expansion. This multiscale expansion can also be used to tackle multiplicative stochastic partial differential equations. A critical slowing down is predicted for the marginal case when the Fourier phase of the unstable initial condition is null. We carry out Monte Carlo simulations to show the agreement with our theoretical predictions. Analytic results for the bifurcation point and asymptotic analysis of traveling wave-front solutions are included to get insight into the noise-induced transition phenomena mediated by invading fronts.