Bao Weijia, Sahoo Namita, Sun Zhongyuan, Wang Changle, Liu Shen, Wang Yiping, Zhang Lin
Opt Express. 2020 Aug 31;28(18):26461-26469. doi: 10.1364/OE.398794.
The paper presents selective fiber Bragg grating (FBG) inscription in four-core fiber based on a phase mask scanning method. The inscription factors are systematically investigated, which involves fiber core position and focused laser beam size in fiber, etc. Several specific inscriptions (including individual, dual and all inscriptions) are demonstrated. Two orthogonally positioned cores are selectively inscribed and applied to two-dimension vector bending measurement. The measured bending sensitivities of two FBGs range from -54.3 pm/m to 52.2 pm/m and -53.7 pm/m to 52.8 pm/m, respectively. More importantly, it has been revealed that their sensitivities versus bending direction follow regular cosinoidal and sinusoidal distribution. The direction and amplitude of the vector bending can be recovered using measured central wavelength shifts of those two FBGs.
本文提出了一种基于相位掩膜扫描法在四芯光纤中写入选择性光纤布拉格光栅(FBG)的方法。系统地研究了写入因素,包括光纤纤芯位置和光纤中聚焦激光束的尺寸等。展示了几种特定的写入方式(包括单个、双个和全部写入)。选择性地在两个正交定位的纤芯中写入FBG,并将其应用于二维矢量弯曲测量。两个FBG的测量弯曲灵敏度分别在-54.3 pm/m至52.2 pm/m和-53.7 pm/m至52.8 pm/m范围内。更重要的是,已经发现它们的灵敏度与弯曲方向遵循规则的余弦和正弦分布。利用这两个FBG测量的中心波长偏移可以恢复矢量弯曲的方向和幅度。