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Ultrahigh Resolution Multiplexed Fiber Bragg Grating Sensor for Crustal Strain Monitoring

机译:用于监测地壳应变的超高分辨率多路光纤布拉格光栅传感器

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We demonstrated a multiplexed fiber Bragg grating (FBG) sensor with static strain resolution of 10 nanostrain (nε) for crustal strain monitoring. Each sensor unit consists of a pair of identical FBGs for strain sensing and reference, respectively. A narrow linewidth tunable laser is used to interrogate the FBGs, and a cross-correlation algorithm is incorporated to demodulate the wavelength difference induced by strain. When no strain is applied, an ultrahigh wavelength precision corresponding to strain resolution of 3.3 nε was obtained, indicating the ultimate resolution of the sensor system. With a variable strain applied by a piezo-stage, strain resolution of 17.6 nε was demonstrated. When the sensor is adopted for the in situ monitoring of crustal deformation, the strain induced by oceanic tide is clearly recorded with a resolution of 10 nε, providing a potential tool for the geophysical measurements.
机译:我们演示了静态应变分辨率为10纳米应变(nε)的多路光纤布拉格光栅(FBG)传感器,用于监测地壳应变。每个传感器单元由一对相同的FBG组成,分别用于应变传感和参考。窄线宽可调谐激光器用于询问FBG,并采用互相关算法来解调应变引起的波长差。当不施加应变时,可获得对应于3.3nε应变分辨率的超高波长精度,表明传感器系统的最终分辨率。在压电级施加可变应变的情况下,应变分辨率为17.6nε。当采用传感器现场监测地壳变形时,清晰记录了由海潮引起的应变,分辨率为10nε,为地球物理测量提供了潜在的工具。

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