Tronciu V Z, Wünsche H-J, Wolfrum M, Radziunas M
Department of Physics, Technical University of Moldova, Stefan cel Mare av. 168, Chisinau MD-2004, Republic of Moldova.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Apr;73(4 Pt 2):046205. doi: 10.1103/PhysRevE.73.046205. Epub 2006 Apr 18.
We study the continuous-wave (cw) operation of a semiconductor laser subject to optical feedback from a Fabry-Perot resonator in a case where the emission is resonant to a reflection minimum of the resonator. This configuration is treated in the framework of Lang-Kobayashi equations. The nature of bifurcations and the stability of steady state solutions is analyzed in terms of the dependence on magnitude and phase of the feedback. In contrast to conventional optical feedback from a single mirror, the locus of external cavity modes is not elliptic but represents a tilted eight with possible satellite bubbles. Below a critical feedback strength, which is analytically given, only one single mode exists representing the completely unchanged cw emission of the laser. In this weak-feedback regime, the feedback phase allows noninvasive control of the cw emission and a tailoring of its small-signal response within wide limits. The results obtained are a prototype for all-optical realizations of delayed feedback control.
我们研究了在发射与法布里-珀罗谐振器的反射最小值共振的情况下,受法布里-珀罗谐振器光学反馈作用的半导体激光器的连续波(cw)运行。这种配置在朗-小林方程的框架内进行处理。根据对反馈幅度和相位的依赖性,分析了分岔的性质和稳态解的稳定性。与来自单个反射镜的传统光学反馈不同,外腔模式的轨迹不是椭圆形的,而是呈现出带有可能的卫星气泡的倾斜数字8。在解析给出的临界反馈强度以下,只存在一个单一模式,代表激光器完全未改变的连续波发射。在这种弱反馈 regime 中,反馈相位允许对连续波发射进行非侵入性控制,并在很宽的范围内调整其小信号响应。所获得的结果是延迟反馈控制全光实现的一个原型。