Subdiffusive fluctuations of "pulled" fronts with multiplicative noise
arXiv:cond-mat/0004102 · doi:10.1103/PhysRevE.62.R13
Abstract
We study the propagation of a ``pulled'' front with multiplicative noise that is created by a local perturbation of an unstable state. Unlike a front propagating into a metastable state, where a separation of time scales for sufficiently large creates a diffusive wandering of the front position about its mean, we predict that for so-called pulled fronts, the fluctuations are subdiffusive with root mean square wandering , {\em not} . The subdiffusive behavior is confirmed by numerical simulations: For , these yield an effective exponent slightly larger than 1/4.
4 pages, 1 figure. Final version with minor changes