Luo Haipeng, Sun Qizhen, Xu Zhilin, Liu Deming, Zhang Lin
Opt Lett. 2014 Jul 1;39(13):4049-52. doi: 10.1364/OL.39.004049.
A multimode microfiber (MMMF)-based dual Mach-Zehnder interferometer (MZI) is proposed and demonstrated for simultaneous measurement of refractive index (RI) and temperature. By inserting a section of MMMF supporting a few modes in the sensing arm of the MZI setup, an inline interference between the fundamental mode and the high-order mode of MMMF, as well as the interference between the high-order mode of MMMF and the reference arm, i.e., the dual MZI, is realized. Due to different interference mechanisms, the former interferometer achieves RI sensitivity of 2576.584 nm/RIU and temperature sensitivity of -0.193 nm/°C, while the latter one achieves RI sensitivity of 1001.864 nm/RIU and temperature sensitivity of 0.239 nm/°C, demonstrating the ability to attain highly accurate multiparameter measurements.
本文提出并演示了一种基于多模微光纤(MMMF)的双马赫曾德尔干涉仪(MZI),用于同时测量折射率(RI)和温度。通过在MZI装置的传感臂中插入一段支持多种模式的MMMF,实现了MMMF基模与高阶模之间的在线干涉,以及MMMF高阶模与参考臂之间的干涉,即双MZI。由于干涉机制不同,前一个干涉仪的RI灵敏度为2576.584 nm/RIU,温度灵敏度为-0.193 nm/°C,而后一个干涉仪的RI灵敏度为1001.864 nm/RIU,温度灵敏度为0.239 nm/°C,证明了其实现高精度多参数测量的能力。