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Fiber Sagnac interferometers with ultralong and random distributed feedback Raman laser amplification

机译:具有超长和随机分布反馈拉曼激光放大的Sagnac光纤干涉仪

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摘要

We numerically study and compare the performance limitations imposed by accumulated noise and nonlinear phase difference in various configurations of amplified fiber optic gyroscopes in which amplification is provided by stimulated Raman scattering, with a focus on ultralong and random distributed feedback Raman fiber lasers. We show that, even in the presence of pump power and signal instabilities, some of the proposed configurations have the potential to allow the use of up to 5 times longer spool lengths, with a corresponding 5-fold increase in sensitivity. The results could have direct application to the improvement of the detection of seismic rotational events.
机译:我们数值研究和比较了在放大的光纤陀螺仪的各种配置中,累积噪声和非线性相位差对性能的限制,在这些配置中,受激拉曼散射提供了放大,重点是超长和随机分布反馈拉曼光纤激光器。我们表明,即使在泵浦功率和信号不稳定的情况下,某些建议的配置也有可能允许使用最长5倍的线轴长度,并相应地将灵敏度提高了5倍。该结果可直接用于改进地震旋转事件的检测。

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