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Intensity Noise Properties of Midinfrared Injection Locked Quantum Cascade Lasers: II. Experiments

机译:中红外注入锁定量子级联激光器的强度噪声特性:II。实验

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We present experimental investigations of the intensity noise properties of injection-locked midinfrared emitting quantum cascade lasers. Following the theoretical approach by Simos , the injection locking is realized below and near the threshold of the free running slave laser, resulting in an efficient technique to achieve low-noise operation. We find that below the threshold, the locking characteristics as locking range, shape and bandwidth, are different in comparison with those above threshold. In addition, we also investigate injection locking into longitudinal side modes of the slave laser apart by several longitudinal mode hops, and observe similar characteristics, however, with the potential to achieve higher relative intensity noise suppression. The measurements are confirmed by additional numerical simulations with a new model, which considers the multimode spectrum of the slave laser and the spectral profile of the material gain. Under the actual experimental conditions, a reduction of the relative intensity noise of the slave laser of up to 10 dB (above threshold) and up to 20 dB (below threshold) in comparison to the free running slave laser noise level is achieved.
机译:我们目前对注入锁定中红外发射量子级联激光器的强度噪声特性进行实验研究。遵循Simos的理论方法,在自由运行的从激光器的阈值以下和附近实现了注入锁定,从而获得了一种实现低噪声操作的有效技术。我们发现,低于阈值时,锁定特性(如锁定范围,形状和带宽)与高于阈值时相比有所不同。此外,我们还研究了注入锁定到从激光器的纵向模式中,并通过几个纵向模式跃点分开,并观察到类似的特性,但是有可能实现更高的相对强度噪声抑制。通过使用新模型进行的附加数值模拟,可以确认测量结果,该模型考虑了从激光器的多模光谱和材料增益的光谱轮廓。在实际实验条件下,与自由运行的从属激光器噪声水平相比,从属激光器的相对强度噪声降低了10 dB(高于阈值)和20 dB(低于阈值)。

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