Lee SeungHun, Parekh Devang, Shindo Takahiko, Yang Weijian, Guo Peng, Takahashi Daisuke, Nishiyama Nobuhiko, Chang-Hasnain Connie J, Arai Shigehisa
Department of Electrical and Electronic Engineering, Tokyo Institute of Technology, 2-12-1-S9-5 O-okayama, Meguro-ku, Tokyo, 152-8552 Japan.
Opt Express. 2010 Aug 2;18(16):16370-8. doi: 10.1364/OE.18.016370.
The modulation bandwidth enhancement of distributed reflector (DR) lasers with wirelike active regions utilizing optical injection locking is demonstrated both theoretically and experimentally. By the rate equation analysis, it is shown that DR lasers with wirelike active regions realize a low optical injection power and a large bandwidth enhancement under small operation currents. Experimentally, the small-signal bandwidth is increased to >15 GHz at a bias current of 5 mA, which is 4 times smaller than that for conventional edge-emitting lasers. A large signal modulation at 10 Gbps is also performed at the same bias current of 5 mA and voltage swing of 0.4 V(pp), and error-free detection was confirmed under the low-power conditions.
利用光注入锁定实现具有线状有源区的分布反馈(DR)激光器调制带宽增强的理论和实验均已得到验证。通过速率方程分析表明,具有线状有源区的DR激光器在小工作电流下可实现低光注入功率和大幅带宽增强。实验中,在5 mA偏置电流下,小信号带宽增加到大于15 GHz,这比传统边发射激光器小4倍。在相同的5 mA偏置电流和0.4 V(峰峰值)电压摆幅下,还进行了10 Gbps的大信号调制,并且在低功率条件下证实了无误码检测。