Litcius/Paper detail

Temperature compensated fiber optic magnetic sensor based on the combination interference principle

Qi Yu, Xuegang Li, Xue Zhou, Xinjie Gao, Ri-Qing Lv, Linh V. Nguyen, Stephen C. Warren‐Smith, Yong Zhao

2022Optics Letters19 citationsDOI

Abstract

In this paper, a highly sensitive temperature compensated fiber optic magnetic field sensor by Sagnac and Mach-Zehnder combination interference (SMZI) is proposed and verified. The sensing structure relies on microstructured exposed core fiber (ECF) filled with ethanol and magnetic fluid (MF). The refractive index of MF and ethanol is affected by the magnetic field and temperature (MFT). SMZI is based on the multimode and birefringence characteristics of ECF. The measurement principle is that the spectra of Sagnac interference and Mach-Zehnder interference have respective sensitivities to the MFT. The magnetic sensitivity can reach 1.17 nm/mT, and the temperature sensitivity is up to -1.93 nm/°C. At the same time, the sensor has good repeatability and low detection limits of 0.41 mT and 0.25°C, respectively. It not only solves the cross-influence of temperature but also makes the spectral analysis more intuitive. The sensor has a broad development prospect in the application of MFT detection.

Topics & Concepts

OpticsFiber optic sensorBirefringenceInterference (communication)Refractive indexMaterials scienceSensitivity (control systems)Optical fiberMagnetic fieldInterferometryMach–Zehnder interferometerPhotonic-crystal fiberPhysicsTelecommunicationsElectronic engineeringComputer scienceEngineeringChannel (broadcasting)Quantum mechanicsAdvanced Fiber Optic SensorsPhotonic and Optical DevicesMagneto-Optical Properties and Applications