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Chirp reduction of directly modulated semiconductor lasers at 10 Gb/s by strong CW light injection

机译:通过强力连续波光注入以10 Gb / s的速度直接调制半导体激光器的降低

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摘要

The influence of strong light injection on the reduction of the dynamical linewidth broadening of directly current-modulated semiconductor lasers at high bit rates is theoretically investigated and experimentally verified for 10 Gb/s NRZ pseudorandom modulation with a large current swing of 40 mA pp. Significant chirp reduction and single-mode operation are observed for bulk DFB, quantum well DFB lasers at 10 Gb/s and a weakly coupled bulk DFB laser at 8 Gb/s, so that an improvement of the transmission performance using standard monomode fibers in the 1.55 /spl mu/m low-loss wavelength region can be achieved for all these laser types, where dispersion otherwise causes severe penalties for long-haul transmission. The properties of injection-locked bulk DFB and quantum well DFB lasers with respect to high bit rate modulation have been systematically studied by the use of the rate equation formalism. A dynamically stable locking range of more than 30 GHz under modulation has been found for both laser types with injection ratios higher than 0.5.
机译:对于10 Gb / s NRZ伪随机调制和40 mA pp pp的大电流摆幅,在高位速率下强注入光对直接调制半导体激光器的动态线宽展宽减小的影响进行了理论研究和实验验证。对于体DFB,10 Gb / s的量子阱DFB激光器和8 Gb / s的弱耦合体DFB激光器,观察到降低和单模工作,因此使用1.55中的标准单模光纤可改善传输性能​​。所有这些类型的激光器都可以实现/ splμm/ m的低损耗波长范围,否则色散会严重影响长距离传输。通过使用速率方程形式,系统地研究了注入锁定体DFB和量子阱DFB激光器在高比特率调制方面的特性。对于两种注入率高于0.5的激光器,已经发现在调制下动态稳定的锁定范围超过30 GHz。

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