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Refractive index measurement using OTDR-based ring-down technique with S fiber taper

机译:折射率测量使用基于OTDR的折断技术,具有S纤维锥度

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摘要

We proposed and demonstrated a fiber loop ring-down (FLRD) sensor based on S fiber taper (SFT) cascaded with a Faraday rotator mirror (FRM) for refractive index (RI) measurement. The FLRD cavity is established conveniently by an optical time domain reflectometry (OTDR). The net loss of the cavity is modulated by the RI-sensitive SFT. The surrounding refractive index (SRI) measurement can be realized by monitoring the slope of the ring-down pulses envelope. Owing to the compensation provided by the erbium-doped fiber amplifier (EDFA), the ring-down pulses signal of the OTDR-based FLRD cavity is improved effectively. Within the measurement range of 1.3330 similar to 1.3518, the proposed sensor has a linear response to the SRI with a sensitivity of 2646.307 dB/(km RIU) at the interrogating wavelength of 1550 nm. Compared with the conventional FLRD sensors, the proposed OTDR-based RI sensor has the advantages of simple design and reflective sensing structure, which is easily implementable and cost-effective.
机译:我们提出并证明了基于S纤维锥形(SFT)的纤维环旋转(FLRD)传感器,该纤维锥形锥形锥形锥形锥形(SFT)与法拉第旋转器镜(FRM)级联,用于折射率(RI)测量。通过光学时域反射区(OTDR)方便地建立FLRD腔。腔的净损失由Ri敏感的SFT调节。通过监测折断脉冲包络的斜率,可以实现周围的折射率(SRI)测量。由于掺铒光纤放大器(EDFA)提供的补偿,基于OTDR的FLRD腔的倒退脉冲信号有效地提高。在1.3330的测量范围内,类似于1.3518,所提出的传感器对SRI具有线性响应,在1550nm的询问波长下具有2646.307db /(km riu)的灵敏度。与传统的FLRD传感器相比,所提出的基于OTDR的RI传感器具有简单的设计和反射传感结构的优点,可容易可实现和成本效益。

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