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Modulation performance of a semiconductor laser coupled to an external high-Q resonator

机译:耦合到外部高Q谐振器的半导体激光器的调制性能

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The dynamic response of a semiconductor laser coupled to an external resonator is studied using the single-mode rate equations modified to account for the dispersive feedback. Both the frequency and the damping rate of relaxation oscillations are affected by the feedback. The frequency chirp that invariably accompanies amplitude modulation is significantly reduced. The feedback also reduces the phase noise and the linewidth. To investigate the usefulness of external-resonator lasers in high-speed optical communication systems, the rate equation have been solved numerically to obtain the emitted chirped pulse; the pulse is propagated through the fiber, detected, and filtered at the receiver. The simulated-eye diagrams show that such lasers can be operated at high bit rates with negligible dispersion penalty owing to their reduced frequency chip.
机译:使用修改以解决色散反馈的单模速率方程,研究耦合到外部谐振器的半导体激光器的动态响应。弛豫振荡的频率和阻尼率均受反馈影响。不变地伴随振幅调制的频率线性调频被大大降低。反馈还减少了相位噪声和线宽。为了研究外部谐振激光器在高速光通信系统中的有用性,已对速率方程进行了数值求解,以获得了发射的chi脉冲。脉冲在光纤中传播,检测并在接收器处过滤。仿真眼图表明,由于这种激光器的频率芯片降低,因此它们可以以高比特率工作,并且色散损失可忽略不计。

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