材料科学
蓝宝石
光纤布拉格光栅
飞秒
光电子学
光学
栅栏
反射(计算机编程)
激光器
光纤
光纤传感器
温度测量
多模光纤
灵敏度(控制系统)
光纤激光器
钛宝石激光器
衍射光栅
光谱宽度
分布反馈激光器
蓝宝石上的硅
熔接
磷
光子学
功勋
纤维
光子晶体光纤
作者
Xiang Zhu,Hongtian Zhu,Rui Liang,Qi Zhang,Zhenyin Hai,Yongqiu Zheng Yongqiu Zheng,Zhichun Liu,Chenyang Xue
标识
DOI:10.1109/jlt.2026.3665819
摘要
Although sapphire optical fibers exhibit excellent tolerance to extremely high temperature environments, their multimode characteristics and the resulting fluctuations in the wide reflection spectrum limit their sensing applications. To address this issue, we propose and demonstrate a novel sapphire optical fiber high-temperature sensor that utilizes a decreasing-ring grating structure fabricated through a femtosecond laser direct writing process. This design effectively suppresses the higher-order modes of the sapphire optical fiber. By employing arc discharge technology to create the fusion points between sapphire fibers and single-mode fibers, we generate a single, narrow reflection peak with a full width at half maximum (FWHM) of approximately 0.27 nm at 1530.67 nm, measured at room temperature (approximately 24°C). This sensor exhibits high temperature sensitivity and can maintain stable operation above 1500°C in harsh high-temperature environments. Due to its exceptional temperature tolerance, narrow bandwidth, and resistance to electromagnetic interference, this sensor holds significant potential for precise temperature sensing in extremely challenging conditions.
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