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用于高温测量的多层、偏置耦合蓝宝石光纤布拉格光栅

Multi-layer, offset-coupled sapphire fiber Bragg gratings for high-temperature measurements.

作者信息

Xu Xizhen, He Jun, Liao Changrui, Wang Yiping

出版信息

Opt Lett. 2019 Sep 1;44(17):4211-4214. doi: 10.1364/OL.44.004211.

Abstract

We demonstrate the fabrication of multi-layer sapphire fiber Bragg gratings (SFBGs) using a femtosecond laser line-by-line scanning technique. This multi-layer grating structure enlarges the index modulation area and can effectively increase the reflectivity of SFBGs. The spectral characteristics of multi-layer SFBGs with different layer quantities and spacings were studied. A double-layer SFBG with a layer spacing of 5 μm exhibits a reflectivity of 34.1%, which is much higher than that of a single-layer SFBG (i.e., ∼6.3%). Moreover, the higher-order modes of multi-layer SFBG could be suppressed by offset coupling, leading to a reduced SFBG bandwidth (full width at half-maximum [FWHM]) of 1.32 nm. In addition, the high-temperature response of the multi-layer, offset-coupled SFBGs was also studied. The SFBG can withstand a high temperature of 1612°C and exhibits a sensitivity of 45.2 pm/°C at high temperatures. Such multi-layer, offset-coupled SFBGs could be developed for high-temperature sensing in metallurgical, chemical, and aviation industries.

摘要

我们展示了使用飞秒激光逐行扫描技术制造多层蓝宝石光纤布拉格光栅(SFBG)。这种多层光栅结构扩大了折射率调制区域,并能有效提高SFBG的反射率。研究了具有不同层数和间距的多层SFBG的光谱特性。层间距为5μm的双层SFBG的反射率为34.1%,远高于单层SFBG的反射率(即~6.3%)。此外,多层SFBG的高阶模式可以通过偏移耦合来抑制,从而使SFBG带宽(半高全宽[FWHM])减小至1.32nm。此外,还研究了多层偏移耦合SFBG的高温响应。该SFBG能够承受1612°C的高温,并且在高温下表现出45.2pm/°C的灵敏度。这种多层偏移耦合SFBG可用于冶金、化工和航空工业中的高温传感。

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