Ushakov O V, Wünsche H-J, Henneberger F, Khovanov I A, Schimansky-Geier L, Zaks M A
Institut für Physik, Humboldt Universität zu Berlin, Newtonstrasse 15 12489 Berlin, Germany.
Phys Rev Lett. 2005 Sep 16;95(12):123903. doi: 10.1103/PhysRevLett.95.123903. Epub 2005 Sep 14.
We report on the observation of coherence resonance for a semiconductor laser with short optical feedback close to Hopf bifurcations. Noise-induced self-pulsations are documented by distinct Lorentzian-like features in the power spectrum. The character of coherence is critically related to the type of the bifurcation. In the supercritical case, spectral width and height of the peak are monotonic functions of the noise level. In contrast, for the subcritical bifurcation, the width exhibits a minimum, translating into resonance behavior of the correlation time in the pulsation transients. A theoretical analysis based on the generic model of a self-sustained oscillator demonstrates that these observations are of general nature and are related to the fact that the damping depends qualitatively different on the noise intensity for the subcritical and supercritical case.
我们报告了在接近霍普夫分岔的短光反馈半导体激光器中相干共振的观测结果。功率谱中明显的类洛伦兹特征记录了噪声诱导的自脉动。相干特性与分岔类型密切相关。在超临界情况下,峰值的谱宽和高度是噪声水平的单调函数。相比之下,对于亚临界分岔,宽度呈现最小值,这转化为脉动瞬态中相关时间的共振行为。基于自激振荡器通用模型的理论分析表明,这些观测结果具有普遍性质,并且与以下事实相关:对于亚临界和超临界情况,阻尼对噪声强度的依赖在定性上有所不同。