Erzgräber H, Wieczorek S, Krauskopf B
College of Engineering, Mathematics, and Physical Sciences, University of Exeter, Exeter EX4 4QF, United Kingdom.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 May;81(5 Pt 2):056201. doi: 10.1103/PhysRevE.81.056201. Epub 2010 May 11.
The stability of two semiconductor lasers that are spatially separated by a passive resonator is analyzed using the composite-cavity mode approach. We study the nonlinear interactions of three composite-cavity modes and identify regions of in-phase and out-of-phase laser locking in the parameter plane of the transmission coefficients of the coupling mirrors and the laser length difference. Bifurcation analysis shows that the structure of the locking regions strongly depends on (i) the length of the passive resonator and (ii) the amount of amplitude-phase coupling of the laser field. Specifically, we find a single locking region when the passive resonator and the lasers have comparable lengths and up to three separate locking regions when the passive resonator is much shorter than the lasers. Furthermore, we use the recently developed 0-1 test for chaos to uncover intricate regions of chaotic dynamics that shrink in size and eventually disappear as the passive resonator length becomes comparable to the laser length.
利用复合腔模方法分析了由无源谐振器在空间上分隔开的两个半导体激光器的稳定性。我们研究了三种复合腔模的非线性相互作用,并在耦合镜传输系数和激光器长度差的参数平面中确定了同相和异相激光锁定区域。分岔分析表明,锁定区域的结构强烈依赖于:(i)无源谐振器的长度;(ii)激光场的幅度 - 相位耦合量。具体而言,当无源谐振器和激光器长度可比时,我们发现单个锁定区域;而当无源谐振器比激光器短得多时,会出现多达三个独立的锁定区域。此外,我们使用最近开发的用于混沌的0 - 1测试来揭示混沌动力学的复杂区域,这些区域的尺寸会缩小,并随着无源谐振器长度变得与激光器长度可比而最终消失。