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Triple detection fiber differentiating interferometer based on low-coherence interferometer and its passive demodulation scheme

机译:基于低相干干涉仪的三重检测光纤微分干涉仪及其无源解调方案

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This paper presents a triple detection fiber differential interferometer and its passive demodulation scheme. The interferometer is based on an all fiber Mach-Zehnder and Sagnac hybrid configuration, which is composed of a fiber ASE source, a section of delay fiber, a 3 x 3 fiber coupler and several other fiber components. In the interferometer, the signal beam and reference beam travel along the same path but in opposite directions. The received signal is demodulated by a triple detection passive demodulation scheme. The interferometer can measure the absolute amplitudes and frequencies of phase sensitive signals with large dynamic range, and the low frequency environmental disturbance is removed simultaneously due to the phase compression mechanism. The experimental results demonstrate that the phase demodulation resolution is 6 x 10(-5) rad and the maximum measuring amplitude is up to 90 rad. This method can be used to measure many kinds of parameters such as vibration and refractive index. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种三重检测光纤差分干涉仪及其无源解调方案。干涉仪基于全光纤Mach-Zehnder和Sagnac混合配置,由光纤ASE源,一段延迟光纤,3 x 3光纤耦合器和其他几个光纤组件组成。在干涉仪中,信号束和参考束沿相同的路径但方向相反。通过三重检测无源解调方案对接收到的信号进行解调。干涉仪可以测量动态范围大的相位敏感信号的绝对幅度和频率,并且由于相位压缩机制,同时消除了低频环境干扰。实验结果表明,相位解调分辨率为6 x 10(-5)rad,最大测量幅度高达90 rad。该方法可用于测量多种参数,例如振动和折射率。 (C)2015 Elsevier Ltd.保留所有权利。

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