Oran Abdullah, Ozharar Sarper, Can Gokhan, Olcer Ibrahim, Ozdur Ibrahim
Opt Express. 2018 Jan 8;26(1):376-381. doi: 10.1364/OE.26.000376.
In this manuscript, a semiconductor based fiber ring cavity mode-locked laser regeneratively driven at 18 GHz is presented. The optical spectrum of the laser is centered at 1578 nm. The laser is RF injection locked via an external source at 18 GHz. The phase noise of the mode-locked laser is measured and the integrated timing jitter was found to be 10.8 fs (from 100 Hz to 20 MHz) and 13.3 fs (from 100 Hz to Nyquist frequency). The integrated amplitude fluctuation (from 100 Hz to 20 MHz) was less than 0.02%. The laser phase and amplitude noise responses to various injected RF power levels were also investigated. The injection RF power has significant effect on the phase noise and the best jitter value is around 40 dB lower than the cavity regenerated RF power.
在本论文中,展示了一种基于半导体的光纤环形腔锁模激光器,其以18 GHz进行再生驱动。该激光器的光谱中心位于1578 nm。该激光器通过一个18 GHz的外部源进行射频注入锁定。对锁模激光器的相位噪声进行了测量,发现积分定时抖动在100 Hz至20 MHz范围内为10.8 fs,在100 Hz至奈奎斯特频率范围内为13.3 fs。积分幅度波动(在100 Hz至20 MHz范围内)小于0.02%。还研究了激光器对各种注入射频功率水平的相位和幅度噪声响应。注入射频功率对相位噪声有显著影响,最佳抖动值比腔再生射频功率低约40 dB。