Rong Qiangzhou, Qiao Xueguang, Guo Tuan, Bao Weijia, Su Dan, Yang Hangzhou
Opt Lett. 2014 Dec 1;39(23):6616-9. doi: 10.1364/OL.39.006616.
An orientation-sensitive fiber-optic accelerometer based on grating inscription over fiber cladding has been demonstrated. The sensor probe comprises a compact structure in which a short section of thin-core fiber (TCF) stub containing a "cladding" fiber Bragg grating (FBG) is spliced to another single-mode fiber (SMF) without any lateral offset. A femtosecond laser side-illumination technique was utilized to ensure that the grating inscription remains close to the core-cladding interface of the TCF. The core mode and the cladding mode of the TCF are coupled at the core-mismatch junction, and two well-defined resonances in reflection appear from the downstream FBG, in which the cladding resonance exhibits a strong polarization and bending dependence due to the asymmetrical distribution of the cladding FBG along the fiber cross section. Strong orientation dependence of the vibration (acceleration) measurement has been achieved by power detection of the cladding resonance. Meanwhile, the unwanted power fluctuations and temperature perturbations can be referenced out by monitoring the fundamental core resonance.
一种基于在光纤包层上写入光栅的方向敏感型光纤加速度计已得到验证。该传感器探头具有紧凑的结构,其中一段包含“包层”光纤布拉格光栅(FBG)的短薄芯光纤(TCF)短截被拼接至另一根单模光纤(SMF),且无任何横向偏移。采用飞秒激光侧面照射技术,以确保光栅写入靠近TCF的纤芯 - 包层界面。TCF的纤芯模式和包层模式在纤芯失配结处耦合,并且从下游FBG会出现两个明确的反射共振,其中包层共振由于包层FBG沿光纤横截面的不对称分布而表现出强烈的偏振和弯曲依赖性。通过对包层共振进行功率检测,实现了振动(加速度)测量的强方向依赖性。同时,通过监测基本纤芯共振,可以消除不必要的功率波动和温度扰动。