Lu Xinda, Zhao Rong, Gao Chenhui, Ye Xinyu, Qin Qiushi, Li Hao, Li Zhixian, Wang Meng, Chen Zilun, Wang Zefeng
College of Advanced Interdisciplinary Studies, National University of Defense Technology, Changsha 410073, China.
Nanhu Laser Laboratory, National University of Defense Technology, Changsha 410073, China.
Nanomaterials (Basel). 2025 Jun 9;15(12):891. doi: 10.3390/nano15120891.
We demonstrate the fabrication of the fiber Bragg grating (FBG) in a self-developed Yb-doped seven-core fiber using two femtosecond laser direct writing methods: a grating array inscription method and a plane-by-plane inscription method. The array fabrication method uses the femtosecond laser to directly write a parallel fiber grating array in the core. The plane-by-plane method is implemented by adding a diaphragm in the optical path to precisely control the length of the refractive index modulation line along the femtosecond laser incident direction. Combined with femtosecond laser scanning, a uniform refractive index modulation plane can be inscribed in the core in a single scanning. Based on these methods, we successfully fabricate high-quality high-reflection FBGs and chirped FBGs in each core of the large-core multicore fiber (MCF) with 14 μm core diameters. Both fabrication methods achieve FBGs with reflectivity above 97% at the central wavelength. We report for the first time the fabrication of high-quality, high-reflectivity FBGs in large-core Yb-doped seven-core fibers using the femtosecond laser plane-by-plane inscription method. This work provides a feasible scheme for fabricating FBGs in MCF.
我们展示了使用两种飞秒激光直写方法在自行研制的掺镱七芯光纤中制造光纤布拉格光栅(FBG):光栅阵列写入法和逐平面写入法。阵列制造方法是利用飞秒激光在纤芯中直接写入平行光纤光栅阵列。逐平面方法是通过在光路中添加一个光阑来精确控制沿飞秒激光入射方向的折射率调制线的长度。结合飞秒激光扫描,可以在单次扫描中在纤芯中写入均匀的折射率调制平面。基于这些方法,我们成功地在芯径为14μm的大芯多芯光纤(MCF)的每个纤芯中制造出了高质量的高反射FBG和啁啾FBG。两种制造方法在中心波长处均实现了反射率高于97%的FBG。我们首次报道了使用飞秒激光逐平面写入法在大芯掺镱七芯光纤中制造高质量、高反射率FBG。这项工作为在MCF中制造FBG提供了一种可行的方案。