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Relative Intensity Noise Study in the Injection-Locked Integrated Electroabsorption Modulator-Lasers

机译:注入锁定集成电吸收调制器-激光器中的相对强度噪声研究

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摘要

We present a comprehensive analytical theoretical model for the relative intensity noise (RIN) spectrum of integrated semiconductor quantum-well (QW) lasers under injection-locking. We use a novel setup by employing an integrated electroabsorption modulator-laser (EML) to measure the RIN of the injection-locked distributed feedback (DFB) laser, where the modulator section is used as a photodetector. The EML has an anti-reflection coating on the laser side, so that an injection light from an external master laser can be coupled effectively into the laser section. This scheme simplifies the setup and reduces the alignment loss between discrete optical components. Experimental data indicates that the injection-locking technique can reduce the RIN noise floor and increase the relaxation frequency of the laser. We also compare the RIN spectra of the free-running laser with the injection-locked laser and show an increase of the relaxation frequency from 3.7 GHz (free-running) to 11.3 GHz (injection-locked). By fitting the experimental data using our model, we show very good agreement between our data and theory. Our model considers the optical confinement factor of photons and carriers for quantum-well structure lasers. We also improve the injection-locking RIN model by including the gain saturation from the master laser noise.
机译:我们为注入锁定下的集成半导体量子阱(QW)激光器的相对强度噪声(RIN)光谱提供了一个综合的分析理论模型。我们通过采用集成的电吸收调制器激光(EML)来测量注入锁定分布反馈(DFB)激光器的RIN,从而使用新颖的设置,其中调制器部分用作光电探测器。 EML在激光器一侧具有抗反射涂层,因此可以将来自外部主激光器的注入光有效地耦合到激光器部分中。该方案简化了设置并减少了分立光学组件之间的对准损耗。实验数据表明,注入锁定技术可以降低RIN噪声本底并增加激光器的弛豫频率。我们还比较了自由运行激光器和注入锁定激光器的RIN光谱,并显示弛豫频率从3.7 GHz(自由运行)增加到11.3 GHz(注入锁定)。通过使用我们的模型拟合实验数据,我们证明了我们的数据和理论之间的很好的一致性。我们的模型考虑了量子阱结构激光器的光子和载流子的光学限制因子。我们还通过包括来自主激光噪声的增益饱和来改善注入锁定RIN模型。

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