Lin Ziting, Lv Riqing, Zhao Yong, Zheng Hongkun, Wang Xixin
Opt Lett. 2021 Jun 1;46(11):2714-2717. doi: 10.1364/OL.428001.
A special open-cavity Mach-Zehnder salinity sensor is presented and verified in this Letter, which has obvious advantages in salinity sensitivity and loss. The open-cavity structure is composed of a short section of etched double-side hole fiber spliced between a pair of multimode fibers and connected in series between a pair of single-mode fibers, which is the SMF-MMF-etched DSHF-MMF-SMF structure proposed in the paper. According to the experiment results, when the cavity length is about 100 µm, the salinity sensitivity of the sensing probe can reach 2 nm/‰, and its refractive index (RI) sensitivity can be more than 10,000 nm/RIU, while having a low loss of ${-}{15};{\rm dB}$ and a detection limit of 0.23‰. Based on its characteristics, the sensor is a prospective online monitor of ocean salinity. At the same time, it also provides a low-cost way to construct an open cavity instead of femtosecond inscribing.
本文提出并验证了一种特殊的开放式腔马赫-曾德尔盐度传感器,该传感器在盐度灵敏度和损耗方面具有明显优势。开放式腔结构由一段短的蚀刻双侧孔光纤拼接在一对多模光纤之间,并串联在一对单模光纤之间组成,即本文提出的SMF-MMF-蚀刻DSHF-MMF-SMF结构。根据实验结果,当腔长约为100 µm时,传感探头的盐度灵敏度可达2 nm/‰,其折射率(RI)灵敏度可超过10000 nm/RIU,同时具有-15 dB的低损耗和0.23‰的检测限。基于其特性,该传感器是一种有前景的海洋盐度在线监测器。同时,它也提供了一种低成本的方式来构建开放式腔,而不是采用飞秒写入技术。