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A High-Quality Mach-Zehnder Interferometer Fiber Sensor by Femtosecond Laser One-Step Processing

机译:飞秒激光一步法制备高质量马赫曾德尔干涉仪光纤传感器

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摘要

During new fiber sensor development experiments, an easy-to-fabricate simple sensing structure with a trench and partially ablated fiber core is fabricated by using an 800 nm 35 fs 1 kHz laser. It is demonstrated that the structure forms a Mach-Zehnder interferometer (MZI) with the interference between the laser light passing through the air in the trench cavity and that in the remained fiber core. The fringe visibilities are all more than 25 dB. The transmission spectra vary with the femtosecond (fs) laser ablation scanning cycle. The free spectral range (FSR) decreases as the trench length increases. The MZI structure is of very high fabrication and sensing repeatability. The sensing mechanism is theoretically discussed, which is in agreement with experiments. The test sensitivity for acetone vapor is about 104 nm/RIU, and the temperature sensitivity is 51.5 pm/°C at 200 ∼ 875 °C with a step of 25 °C.
机译:在新的光纤传感器开发实验中,使用800 nm 35 fs 1 kHz激光器制造了具有沟槽和部分烧蚀光纤纤芯的易于制造的简单传感结构。事实证明,该结构形成了马赫曾德尔干涉仪(MZI),该干涉仪通过了穿过沟槽腔中空气的激光与保留在光纤纤芯中的激光之间的干涉。边缘可见度都超过25 dB。透射光谱随飞秒(fs)激光烧蚀扫描周期而变化。自由光谱范围(FSR)随着沟槽长度的增加而减小。 MZI结构具有很高的制造和感测重复性。从理论上对传感机理进行了讨论,并与实验相吻合。丙酮蒸气的测试灵敏度约为10 4 nm / RIU,温度灵敏度在200〜875°C下以25°C的步幅为51.5 pm /°C。

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