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High-quality phase-shifted Bragg grating sensor inscribed with only one laser pulse in a polymer optical fiber

机译:高质量相移布拉格光栅传感器,在聚合物光纤中仅刻有一个激光脉冲

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摘要

We present the first phase-shifted polymer optical fiber Bragg grating sensor inscribed with only one KrF laser pulse. The phase shift defect was created directly during the grating inscription process by placing a very narrow blocking aperture, in the center of the UV beam. One laser pulse with a duration of 15 ns and energy 6.3 mJ is adequate to introduce a refractive index change of 0.69×10 in the fiber core. The high-quality produced Bragg grating structure rejects 16.3 dB transmitted power, thus providing 97.6% reflectivity, which is well suited for photonic applications. The transmission notch depth is about 10 dB and very sharp notches of 3 dB width ranging from 14 pm is reported. The temperature, strain, and pressure response of the sensor has been characterized showing promising results in applications that require high-precision measurements. The ability to inscribe these high-quality sensors effectively can significantly reduce their production cost in industry.
机译:我们提出了第一个仅用一个KrF激光脉冲刻写的相移聚合物光纤布拉格光栅传感器。通过在紫外光束的中心放置一个非常窄的阻挡孔,可以在光栅刻印过程中直接产生相移缺陷。一个持续时间为15 ns,能量为6.3 mJ的激光脉冲足以在光纤芯中引入0.69×10的折射率变化。高质量的布拉格光栅结构可抑制16.3 dB的发射功率,从而提供97.6%的反射率,非常适合光子应用。传输陷波深度约为10 dB,据报道从14 pm到3 dB宽度的非常尖锐的陷波。传感器的温度,应变和压力响应已被表征,在需要高精度测量的应用中显示出令人鼓舞的结果。有效刻写这些高质量传感器的能力可以大大降低其工业生产成本。

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