Murakami A, Ohtsubo J
Department of Electronic Engineering, The University of Electro-Communications, 1-5-1 Chofu-gaoka, Chofu-shi, Tokyo, 182-8585 Japan.
Phys Rev E Stat Nonlin Soft Matter Phys. 2001 Jun;63(6 Pt 2):066203. doi: 10.1103/PhysRevE.63.066203. Epub 2001 May 14.
Chaos synchronization using a continuous chaos control method was studied in two identical chaotic laser systems consisting of semiconductor lasers and optical feedback from an external mirror. Numerical calculations for rate equations indicate that the stability of chaos synchronization depends significantly on the external mirror position. We performed a linear stability analysis for the rate equations. Our results show that the stability of the synchronization is much influenced by the mode interaction between the relaxation oscillation frequency of the semiconductor laser and the external cavity frequency. Due to this interaction, an intensive mode competition between the two frequencies destroys the synchronization, but stable synchronization can be achieved when the mode competition is very weak.
在由半导体激光器和来自外部反射镜的光反馈组成的两个相同混沌激光系统中,研究了使用连续混沌控制方法的混沌同步。速率方程的数值计算表明,混沌同步的稳定性显著取决于外部反射镜的位置。我们对速率方程进行了线性稳定性分析。我们的结果表明,同步的稳定性受半导体激光器弛豫振荡频率与外腔频率之间的模式相互作用影响很大。由于这种相互作用,两个频率之间强烈的模式竞争会破坏同步,但当模式竞争非常弱时,可以实现稳定同步。