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High temperature sensing using higher-order-mode rejected sapphire- crystal fiber gratings

机译:使用高阶模抑制蓝宝石晶体光纤光栅进行高温感测

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摘要

In this paper, we report the fabrication of higher-order-mode rejected fiber Bragg gratings (FBGs) in sapphire crystal fiber using infrared (IR) femtosecond laser illumination. The grating is tested in high temperature furnace up to 1600 degree Celsius. As sapphire fiber is only available as highly multimode fiber, a scheme to filter out higher order modes in favor for the fundamental mode is theoretically evaluated and experimentally demonstrated. The approach is to use an ultra thin sapphire crystal fiber (60 micron in diameter) to decrease the number of modes. The small diameter fiber also enables bending the fiber to certain radius which is carefully chosen to provide low loss for the fundamental mode LP01 and high loss for the other high-order modes. After bending, less-than-2-nm resonant peak bandwidth is achieved. The grating spectrum is improved, and higher resolution sensing measurement can be achieved. This mode filtering method is very easy to implement. Furthermore, the sapphire fiber is sealed with hi-purity alumina ceramic cement inside a flexible high temperature titanium tube, and the highly flexible titanium tube offers a robust packaging to sapphire fiber. Our high temperature sapphire grating sensor is very promising in extremely high temperature sensing application.
机译:在本文中,我们报告了使用红外(IR)飞秒激光照射在蓝宝石晶体光纤中制造高阶模拒绝光纤布拉格光栅(FBG)的过程。光栅在高达1600摄氏度的高温炉中进行了测试。由于蓝宝石光纤仅可用作高度多模光纤,因此从理论上评估和实验证明了一种滤除高阶模以支持基本模的方案。该方法是使用超薄蓝宝石晶体纤维(直径为60微米)来减少模数。小直径光纤还可以将光纤弯曲到一定的半径,这是经过仔细选择的,以便为基本模式LP01提供低损耗,为其他高阶模式提供高损耗。弯曲后,可获得小于2 nm的谐振峰值带宽。改善了光栅光谱,可以实现更高分辨率的传感测量。这种模式过滤方法非常容易实现。此外,蓝宝石纤维在柔性高温钛管内用高纯度氧化铝陶瓷水泥密封,而高柔性钛管为蓝宝石纤维提供了坚固的包装。我们的高温蓝宝石光栅传感器在极高温传感应用中非常有前途。

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