Liu Yunqi, Chiang Kin Seng, Rao Yun Jiang, Ran Zeng Ling, Zhu Tao
Department of Electronic Engineering, City University of Hong Kong, Hong Kong, China.
Opt Express. 2007 Dec 24;15(26):17645-51. doi: 10.1364/oe.15.017645.
We demonstrate experimentally the light coupling effects between two parallel CO(2)-laser written long-period fiber gratings. For gratings written in standard single-mode fibers, the coupling efficiency depends strongly on the fiber orientation with the strongest coupling obtained when the exposed sides of the fibers face each other, while for gratings written in boron-doped fibers, the coupling efficiency is independent of the fiber orientation. We achieve a peak coupling efficiency of approximately 86% with gratings written in boron-doped fibers by using a suitable surrounding refractive index and offset distance between the two gratings. Our results suggest the possibility of realizing efficient broadband all-fiber couplers with CO(2)-laser written long-period fiber gratings.
我们通过实验证明了两个平行的二氧化碳激光写入长周期光纤光栅之间的光耦合效应。对于写入标准单模光纤的光栅,耦合效率强烈依赖于光纤取向,当光纤的暴露面彼此相对时耦合最强,而对于写入掺硼光纤的光栅,耦合效率与光纤取向无关。通过使用合适的周围折射率和两个光栅之间的偏移距离,我们在掺硼光纤写入的光栅中实现了约86%的峰值耦合效率。我们的结果表明,利用二氧化碳激光写入长周期光纤光栅实现高效宽带全光纤耦合器是有可能的。