Noise-Induced Front Motion: Signature of a Global Bifurcation

Johanne Hizanidis, A. G. Balanov, Andreas Amann, Eckehard Schöll

Physical Review Letters · 2006 · 89 citations · 17 references

Concepts

Abstract

We show that front motion can be induced by noise in a spatially extended excitable system with a global constraint. Our model system is a semiconductor superlattice exhibiting complex dynamics of electron accumulation and depletion fronts. The presence of noise induces a global change in the dynamics of the system forcing stationary fronts to move through the entire device. We demonstrate the effect of coherence resonance in our model; i.e., there is an optimal level of noise at which the regularity of front motion is enhanced. Physical insight is provided by relating the space-time dynamics of the fronts with a phase-space analysis.

References

17