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Evaluation of the un-eliminated laser phase noise induced by interferometer imbalance in self-homodyne coherent optical RF receivers

机译:自谐相干相干光射频接收机中干涉仪不平衡引起的未消除激光相位噪声的评估

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Coherent optical RF receivers constructed in self-homodyne configurations have gained considerable attention due to its simplicity and cost-efficiency. Rigorous symmetry is required in such system to suppress the laser phase noise. A method for evaluation of the un-eliminated laser phase noise in self-homodyne coherent optical RF receivers has been presented in this paper. In our proposed scheme, the un-eliminated laser phase noise is acquired by simply inserting an FBG in the in-phase arm and is found to be dependent on the interferometer asymmetry, i.e., the path imbalance of the interferometer arms. With series of simulations, the variance of the un-eliminated laser phase noise obtained by our method becomes larger when the path imbalance is increasing. The simulation results show that, variance increases with the asymmetrical time delays of two interferometer arms. Therefore, this method is very helpful in obtaining further insight into the system symmetry and is also a good guidance for the adjustment of the interferometer architecture to achieve the optimized path equality.
机译:由于其自身的简单性和成本效益,以自同调子结构构造的相干光射频接收器已经引起了广泛的关注。在这种系统中需要严格的对称性以抑制激光相位噪声。本文提出了一种评估自同调相干光射频接收机中未消除的激光相位噪声的方法。在我们提出的方案中,通过简单地将FBG插入同相臂即可获得未消除的激光相位噪声,并且发现该噪声取决于干涉仪的不对称性,即干涉仪臂的路径不平衡。通过一系列仿真,当路径不平衡增加时,通过我们的方法获得的未消除的激光相位噪声的方差变得更大。仿真结果表明,方差随着两个干涉仪臂的不对称延时而增大。因此,该方法对于进一步深入了解系统对称性非常有帮助,并且对于调整干涉仪架构以实现优化的路径均等性也有很好的指导。

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