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High Sensitivity Chiral Long-Period Grating Sensors Written in the Twisted Fiber

机译:扭曲光纤中编写的高灵敏度手性长周期光栅传感器

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摘要

A chiral long-period grating (CLPG) was fabricated successfully by scanning CO laser in a twisted conventional single-mode fiber. The strong mode coupling can be achieved in a short grating length. The sensing characteristics of the CLPGs were investigated experimentally. Compared with the conventional long-period fiber gratings, the CLPGs were found to have the similar temperature and refractive index sensitivities and much higher torsion, bending, and strain sensitivities. The high sensitivity of the CLPG can be attributed to the screw-type waveguide structure induced by the scanning laser in the twisted fiber. The proposed CLPGs could have great potential applications as filters and optical sensors.
机译:通过在扭曲的传统单模光纤中扫描CO激光器成功地制备了手性长周期光栅(CLPG)。强模式耦合可以在较短的光栅长度内实现。实验研究了CLPG的传感特性。与常规的长周期光纤光栅相比,发现CLPG具有相似的温度和折射率敏感性,以及更高的扭转,弯曲和应变敏感性。 CLPG的高灵敏度可归因于由扫描激光器在加捻光纤中引起的螺旋型波导结构。提出的CLPG可能具有巨大的潜在应用,如滤光片和光学传感器。

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