Opt Lett. 2018 Oct 1;43(19):4562-4565. doi: 10.1364/OL.43.004562.
We propose and demonstrate the fabrication of single-crystal sapphire fiber Bragg gratings (SFBGs) using a femtosecond laser line-by-line scanning technique. This approach provides a robust method for producing SFBGs at various Bragg wavelengths with an acceptable reflectivity. The spectrum characteristics of the SFBGs with various fiber diameters, track lengths, and grating pitch quantities were investigated. An SFBG with a reflectivity of 6.3% was obtained via optimization of fabrication parameters. Additionally, a serial array consisting of five SFBGs at different wavelengths was successfully constructed. The high-temperature response of these SFBGs was tested and the experimental results showed the SFBGs could withstand a high temperature of 1612°C. Moreover, a temperature sensitivity of 36.5 pm/°C was achieved in the high-temperature region. Such SFBGs could be developed for promising high-temperature sensors in aero engines.
我们提出并演示了使用飞秒激光逐线扫描技术制造单晶蓝宝石光纤布拉格光栅(SFBG)。这种方法为在各种布拉格波长下产生具有可接受反射率的 SFBG 提供了一种稳健的方法。研究了具有不同光纤直径、轨道长度和光栅节距数量的 SFBG 的光谱特性。通过优化制造参数,获得了反射率为 6.3%的 SFBG。此外,还成功构建了由五个不同波长的 SFBG 组成的串联阵列。测试了这些 SFBG 的高温响应,实验结果表明 SFBG 可以承受 1612°C 的高温。此外,在高温区域实现了 36.5 pm/°C 的温度灵敏度。这种 SFBG 可以开发用于航空发动机的有前途的高温传感器。