离焦CO2激光器制备用于折射率传感的长周期光纤光栅

Minwei Yang, Dong-ning Wang, Yuhua Li
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引用次数: 0

摘要

长周期光纤光栅(LPFG)在光纤通信和光纤传感器中有着广泛的应用。它可以用许多方法制作。近年来,通过将高频CO2激光脉冲直接聚焦在光纤包层表面,制备出了具有大谐振峰损耗和明显非对称包层模式耦合的边写LPFG。这种LPFG在光纤包层表面只有很小的折射率变化面积,没有任何物理变形。在这项工作中,我们开发了一种利用离焦CO2激光脉冲制作LPFG的新方法,即将激光束焦点稍微远离光纤包层表面。制备LPFG后未观察到明显的物理损伤。随着距离光纤包层表面移动距离的增加,光纤包层的诱导平均折射率变化变小,与聚焦CO2激光脉冲产生的LPFG相比,偏振相关损耗减小。与聚焦CO2激光脉冲相比,本研究开发的LPFG对光纤包层周围外部折射率的谐振波长具有更高的灵敏度。这种新型LPFGs在折射率传感器中具有重要的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Long Period Fiber Grating Fabricated by Defocused CO2 Laser for Refractive Index Sensing
Long period fiber grating (LPFG) has many applications in optical fiber communications and optical fiber sensors. It can be fabricated by many methods. Recently, an edge written LPFG with large resonant peak loss and apparent asymmetric cladding mode coupling has been produced by focusing the high frequency CO2 laser pulses directly on the fiber cladding surface. Such a LPFG exhibits only a small area of refractive index change on the fiber cladding surface without any physical deformation. In this work, we developed a new LPFG fabrication method by use of defocused CO2 laser pulses, i.e. to move the laser beam focus slightly away from the fiber cladding surface. No apparent physical damage is observed after the LPFG fabrication. With the increase of the moving distance from the fiber cladding surface, the induced average refractive index change in the fiber cladding becomes smaller, which also leads to a decreased polarization dependent loss when compared with the LPFG made by the focused CO2 laser pulses. The LPFG developed in this work also shows a higher sensitivity of the resonant wavelength to the external refractive index around the fiber cladding than that made by use of focused CO2 laser pulses. It is expected that this new type of LPFGs have important applications in refractive index sensors.
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