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具有1/fν频率噪声的激光在光纤中通过双瑞利散射产生的噪声。

Noise induced in optical fibers by double Rayleigh scattering of a laser with a 1/fν frequency noise.

作者信息

Fleyer Michael, Heerschap Seth, Cranch Geoffrey A, Horowitz Moshe

出版信息

Opt Lett. 2016 Mar 15;41(6):1265-8. doi: 10.1364/OL.41.001265.

Abstract

We study, theoretically and experimentally, intensity noise induced by double Rayleigh scattering in long optical fibers. The results of the theoretical model are compared to experimental results performed with a high-coherence-length laser with a frequency noise spectrum that is dominated by 1/fν noise. Excellent quantitative agreement between theoretical and experimental RF spectra were obtained for frequencies as low as 10 Hz and for fiber lengths between 4 and 45 km. Strong low-frequency intensity noise that is induced by 1/fν frequency noise of the laser may limit the performance of interferometric fiber optic sensors that require high-coherence-length lasers. The intensity noise due to double Rayleigh backscattering can be suppressed by reducing the coherence length of the laser. Therefore, the intensity noise has a complex and non-monotonic dependence on the 1/fν frequency noise amplitude of the laser. Stimulated Brillouin scattering will add a significant noise for input powers greater than about 7 mW for a 30 km length fiber.

摘要

我们从理论和实验两方面研究了长光纤中双瑞利散射引起的强度噪声。将理论模型的结果与使用具有以1/fν噪声为主的频率噪声谱的高相干长度激光器进行的实验结果进行了比较。对于低至10 Hz的频率以及4至45 km的光纤长度,理论和实验射频谱之间获得了出色的定量一致性。激光器的1/fν频率噪声引起的强烈低频强度噪声可能会限制需要高相干长度激光器的干涉式光纤传感器的性能。通过减小激光器的相干长度,可以抑制双瑞利背散射引起的强度噪声。因此,强度噪声对激光器的1/fν频率噪声幅度具有复杂且非单调的依赖性。对于30 km长的光纤,当输入功率大于约7 mW时,受激布里渊散射会增加显著的噪声。

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