Opt Lett. 2023 Jan 15;48(2):452-455. doi: 10.1364/OL.480907.
We demonstrate a novel, to the best of our knowledge, two-dimensional vector bending sensor based on orthogonal helical Bragg gratings inscribed in the cladding of a conventional single-mode fiber (SMF). The helical cladding fiber Bragg gratings (HCFBGs) are created by using a femtosecond laser direct writing technology and a quarter-pitch graded index fiber (GIF) is used in front of the HCFBGs to diverge the core mode into fiber cladding. In contrast to the multimode resonance observed in conventional cladding Bragg gratings inscribed by using a femtosecond laser point-by-point (PbP) or line-by-line (LbL) technology, the proposed HCFBGs exhibit stable narrowband single-mode Bragg resonance. An HCFBG with a low peak reflectivity of -50.77 dB and a narrow bandwidth of 0.66 nm was successfully fabricated by using a lateral offset of 45 µm between the HCFBG and the fiber core axis. Moreover, two orthogonal HCFBGs were fabricated in the SMF cladding and used for vector bending sensing. Strong orientation dependence could be seen in omnidirectional bending measurement, exhibiting a maximum bending sensitivity of up to 50.0 pm/m, which is comparable to that in a multicore FBG. In addition, both the orientation and amplitude of bending vector could be reconstructed by using the measured Bragg wavelength shifts in two orthogonal HCFBGs. As such, the proposed HCFBGs could be used in many applications, such as structural health monitoring, robotic arms, and medical instruments.
我们展示了一种新颖的二维矢量弯曲传感器,基于正交螺旋布拉格光栅,刻写在常规单模光纤(SMF)的包层中。螺旋包层光纤布拉格光栅(HCFBG)是使用飞秒激光直写技术创建的,在 HCFBG 前面使用四分之一节距梯度折射率光纤(GIF)将芯模发散到光纤包层中。与使用飞秒激光逐点(PbP)或逐线(LbL)技术刻写的常规包层布拉格光栅中观察到的多模共振相比,所提出的 HCFBG 表现出稳定的窄带单模布拉格共振。通过在 HCFBG 和光纤芯轴之间使用 45 µm 的横向偏移,成功制造出具有低峰值反射率-50.77 dB 和窄带宽 0.66 nm 的 HCFBG。此外,在 SMF 包层中制造了两个正交的 HCFBG 并用于矢量弯曲传感。在全向弯曲测量中可以看到强烈的方向依赖性,表现出高达 50.0 pm/m 的最大弯曲灵敏度,与多芯 FBG 相当。此外,通过测量两个正交 HCFBG 中的布拉格波长移动,可以重建弯曲矢量的方向和幅度。因此,所提出的 HCFBG 可用于许多应用,如结构健康监测、机械臂和医疗器械。