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Signal-to-Noise Ratio of Brillouin Grating Measurement with Micrometer-Resolution Optical Low Coherence Reflectometry

机译:用微米分辨率光学低相干反射测量的布里渊光栅测量的信噪比

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摘要

Signal-dependent speckle-like noise was the dominant noise in a Brillouin grating measurement with micrometer-resolution optical low coherence reflectometry (OLCR). The noise was produced by the interaction of a Stokes signal with beat noise caused by a leaked pump light via square-law detection. The resultant signal-to-noise ratio (SNR) was calculated and found to be proportional to the square root of the dynamic range (DR) defined by the ratio of the Stokes signal magnitude to the variance of the beat noise. The calculation showed that even when we achieved a DR of 20 dB on a logarithmic scale, the SNR value was only 7 on a linear scale and the detected signal tended to fluctuate over ±14% with respect to the mean level. We achieved an SNR of 24 by attenuating the pump light power entering the balanced mixer by 55 dB, and this success enabled us to measure the Brillouin spectrum distributions of mated fiber connectors and a 3-dB fused fiber coupler with a micrometer resolution as examples of OLCR diagnosis.
机译:信号依赖性斑点噪声是用千分尺分辨率光学低相干反射率(OLCR)的布里渊光栅测量中的主噪声。通过Sque-Law检测由泄漏的泵浦光引起的ZOOKE信号的相互作用来产生噪声。计算结果的信噪比(SNR)并发现与由Stokes信号幅度与节拍噪声的方差定义的动态范围(DR)的平方根成比例。计算表明,即使我们在对数标度上达到20dB的DR时,SNR值也仅为线性刻度为7,并且检测信号倾向于相对于平均水平的±14%波动。我们通过将进入平衡式混合器的泵浦电力通过55 dB的泵浦电力实现了24的SNR,并且这种成功使我们能够测量配合光纤连接器的布里渊频谱分布和带有千分尺分辨率的3dB熔融光纤耦合器作为示例OLCR诊断。

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