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首页> 外文期刊>Sensors Journal, IEEE >Torsion Sensing Characteristics of Mechanically Induced Long-Period Holey Fiber Gratings
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Torsion Sensing Characteristics of Mechanically Induced Long-Period Holey Fiber Gratings

机译:机械感应长周期带孔光纤光栅的扭转传感特性

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摘要

We present the spectral transmission response of a long-period holey fiber grating mechanically induced in two different twisted holey fibers. We have found that each resonance wavelength of the grating splits when the holey fiber is twisted prior pressure application. The new upper and lower resonance wavelengths show an opposite symmetrical shift that increases proportionally with the induced twist ratio, and it does not depend on tuning and twist direction. The shift observed in the splitting of the peaks in the mechanically induced long-period holey fiber grating is higher than that obtained in standard single-mode fibers and its sensitivity depends of the transverse structure of the holey fiber. High sensitivity is observed in the fiber with asymmetrical cladding structure. These results are important in the design of new torsion sensors based in long-period holey fiber gratings.
机译:我们介绍了在两种不同的扭曲多孔光纤中机械诱导的长周期多孔光纤光栅的光谱传输响应。我们发现,当在施加压力之前将多孔光纤扭曲时,光栅的每个谐振波长都会分裂。新的上下共振波长显示出相反的对称位移,该对称位移随感应的扭曲比成比例增加,并且与调谐和扭曲方向无关。在机械感应的长周期带孔光纤光栅中,在峰分裂中观察到的偏移高于在标准单模光纤中获得的偏移,并且其灵敏度取决于带孔光纤的横向结构。在具有非对称包层结构的光纤中观察到高灵敏度。这些结果对于基于长周期有孔光纤光栅的新型扭力传感器的设计非常重要。

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