波长
材料科学
波导管
飞秒
灵敏度(控制系统)
光学
温度测量
芯(光纤)
表面微加工
激光器
传输(电信)
光电子学
光纤激光器
强度(物理)
大气温度范围
传输损耗
盐度
航程(航空)
半导体激光器理论
追踪
可调谐激光器
光纤
折射率
波形
光线追踪(物理)
温盐度图
作者
Shuhui Liu,Ruiying Cao,Jin Qiu,Quanrong Deng,Wei Huang,Weijun Tong
标识
DOI:10.1109/jstqe.2025.3609729
摘要
An open cavity anti-resonant reflecting waveguide is proposed and experimentally demonstrated for simultaneous measurement of salinity and temperature. Femtosecond laser micromachining is used to introduce a pair of open channels on a hollow core fiber (HCF) based anti-resonant reflecting waveguide. Results indicate that the anti-resonant reflecting guiding mechanism still exists even when large rectangular channels are introduced to the cavity wall. The strength of the anti-resonant reflecting effect is influenced by the geometric size of the rectangular channels. Sea water salinity measurement is realized with such a device. The intensity at the resonant wavelength increases with increasing salinity, exhibiting a sensitivity of 2.05 dB/% within a 2%-7% saline concentration range, while the transmission Dips shift toward shorter wavelength with a sensitivity of -0.84 nm/%. The temperature sensitivity is 0.049 nm/°C across a temperature range of 30°C-80°C. By tracing the wavelength change of two transmission Dips, the salinity and temperature can be determined simultaneously. The proposed device has advantages such as simple structure and fast response, which has promising applications in marine environmental science and medical biology.
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