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首页> 外文期刊>Sensors and Actuators, A. Physical >Fabrication and characterization of laser-ablated cladding resonances of two different-diameter photosensitive optical fibers
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Fabrication and characterization of laser-ablated cladding resonances of two different-diameter photosensitive optical fibers

机译:两种不同直径光敏光纤的激光烧蚀包层共振的制备和表征

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摘要

In this work, we demonstrate the inscription of grating in both cladding and core of photosensitive single-mode optical fibers with diameter 4.4/125 mu m and 4.2/80 mu m. Such inscription is made possible through a hydrogenation process for the photosensitive fiber and employ high energy focused pulsed laser from an ArF excimer laser. In the fabrication, a periodic ablation is formed on the fiber surface and the optical damage is extended from the fiber surface towards the core of the fiber, observable under an optical microscope. As a result, cladding modes are excited and cladding resonances are produced in the output spectra. The response of cladding resonances to ambient refractive index (RI) is characterized and investigated through simulation and experiment. It is observed that cladding resonances in the fiber with smaller diameter are more sensitive to the ambient RI variation. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们演示了直径为4.4 / 125μm和4.2 / 80μm的光敏单模光纤的包层和纤芯中的光栅标记。通过光敏纤维的氢化过程可以实现这种标记,并可以使用ArF受激准分子激光器提供的高能量聚焦脉冲激光。在制造过程中,在光纤表面形成周期性的烧蚀,并且光学损伤从光纤表面向光纤的纤芯延伸,这可以在光学显微镜下观察到。结果,包层模式被激发并且在输出光谱中产生包层共振。通过模拟和实验表征并研究了包层共振对环境折射率(RI)的响应。可以看出,直径较小的光纤中的包层共振对周围的RI变化更为敏感。 (C)2016 Elsevier B.V.保留所有权利。

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