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多芯光纤中的长周期光栅:一种用于低曲率的超灵敏矢量弯曲传感器。

Long period grating in multicore optical fiber: an ultra-sensitive vector bending sensor for low curvatures.

作者信息

Saffari Pouneh, Allsop Thomas, Adebayo Adedotum, Webb David, Haynes Roger, Roth Martin M

出版信息

Opt Lett. 2014 Jun 15;39(12):3508-11. doi: 10.1364/OL.39.003508.

Abstract

Long period grating was UV inscribed into a multicore fiber consisting of 120 single mode cores. The multicore fiber that hosts the grating was fusion spliced into a single mode fiber at both ends. The splice creates a taper transition between the two types of fiber that produces a nonadiabatic mode evolution; this results in the illumination of all the modes in the multicore fiber. The spectral characteristics of this fiber device as a function of curvature were investigated. The device yielded a significant spectral sensitivity as high as 1.23  nm/m(-1) and 3.57  dB/m(-1) to the ultra-low curvature values from 0 to 1  m(-1). This fiber device can also distinguish the orientation of curvature experienced by the fiber as the long period grating attenuation bands producing either a blue or red wavelength shift. The finite element method (FEM) model was used to investigate the modal behavior in multicore fiber and to predict the phase-matching curves of the long period grating inscribed into multicore fiber.

摘要

长周期光栅通过紫外写入法刻写在由120个单模纤芯组成的多芯光纤中。承载该光栅的多芯光纤两端熔接至单模光纤。这种熔接在两种类型的光纤之间形成了一个锥形过渡区,产生非绝热模式演化;这导致多芯光纤中的所有模式都被激发。研究了该光纤器件的光谱特性随曲率的变化情况。该器件对0至1 m⁻¹的超低曲率值产生了高达1.23 nm/m⁻¹和3.57 dB/m⁻¹的显著光谱灵敏度。由于长周期光栅衰减带会产生蓝色或红色波长偏移,该光纤器件还能够区分光纤所经历的曲率方向。采用有限元方法(FEM)模型研究多芯光纤中的模式行为,并预测刻写在多芯光纤中的长周期光栅的相位匹配曲线。

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