Institut für Theoretische Physik, Sekr. EW 7-1, Technische Universität Berlin, Hardenbergstrasse 36, 10623 Berlin, Germany.
Institute of Applied Physics, Technische Universität Darmstadt, Schlossgartenstrasse 7, 64289 Darmstadt, Germany.
Phys Rev E. 2016 Feb;93(2):022205. doi: 10.1103/PhysRevE.93.022205. Epub 2016 Feb 5.
We study the influence of dual-cavity optical feedback on the emission dynamics and timing stability of a passively mode-locked semiconductor laser using a delay differential equation model and verify the timing stability results by an initial experiment. By bifurcation analysis in dependence of the feedback delay times and feedback strength bistability, quasiperiodic and chaotic dynamics, as well as fundamental mode-locking are investigated, yielding a comprehensive overview on the nonlinear emission dynamics arising due to dual-cavity optical feedback. Optimum self-locking ranges for improving the timing stability by dual-cavity optical feedback are identified. A timing jitter reduction and an increase of the repetition rate tuning range of up to a factor of three, compared with single-cavity feedback, are predicted for the parameter ranges investigated. Improved timing stability on short and long timescales is predicted for dual-cavity feedback through the suppression of noise-induced fluctuations. Based on the numerical predictions, experimentally, a maximum timing jitter reduction up to a factor of 180 is found, accompanied by a side-band reduction by a factor of 58 dB, when both feedback cavities are resonant.
我们使用延迟微分方程模型研究了双腔光反馈对被动锁模半导体激光器发射动力学和定时稳定性的影响,并通过初步实验验证了定时稳定性结果。通过对反馈延迟时间和反馈强度双稳、准周期和混沌动力学的分岔分析,研究了由于双腔光反馈而产生的基本锁模非线性发射动力学,从而对由于双腔光反馈而产生的非线性发射动力学有了全面的了解。确定了通过双腔光反馈提高定时稳定性的最佳自锁定范围。与单腔反馈相比,预测在研究的参数范围内,定时抖动可降低,重复率调谐范围可提高至三倍。通过抑制噪声引起的波动,预测双腔反馈在短时间和长时间尺度上具有更好的定时稳定性。基于数值预测,实验上,当两个反馈腔都谐振时,发现最大定时抖动降低了 180 倍,同时边带降低了 58dB。