Fan X, Wang Q, Zhou M, Liu F, Shen H, Wei Z, Wang F, Tan C, Meng H
Opt Express. 2020 Aug 17;28(17):24682-24692. doi: 10.1364/OE.390207.
A relative humidity sensor based on a graphene oxide-coated few-mode fiber Mach-Zehnder interferometer (MZI) is proposed in this paper. The MZI was made by splicing a segment of the few-mode fiber (FMF) between two segments of a no-core fiber (NCF) and two segments of a single mode fiber (SMF) located outside the two NCFs. The core and cladding of the FMF acted as interferometric arms, while the NCFs acted as couplers for splitting and recombining light due to mismatch of mode field diameter. The cladding of the FMF was corroded with hydrofluoric acid, and a layer of graphene oxide (GO) film was coated on the corroded cladding of FMF via the natural deposition method. The refractive index of GO varied upon absorption the water molecules. As a result, the phase difference of the MZI varied and the wavelength of the resonant dip shifted with a change in the ambient relative humidity (RH). High humidity sensitivity of 0.191 and 0.061 nm/%RH in the RH range of 30-55% and 55-95%, respectively, were achieved experimentally. The high sensitivity, compact size, and simple manufacturing of the proposed sensor could offer attractive applications in fields of chemical sensors and biochemical detection.
本文提出了一种基于氧化石墨烯包覆少模光纤马赫-曾德尔干涉仪(MZI)的相对湿度传感器。该MZI是通过在两段无芯光纤(NCF)之间熔接一段少模光纤(FMF),并在两段NCF外侧各熔接一段单模光纤(SMF)制成的。FMF的纤芯和包层充当干涉臂,而NCF由于模场直径不匹配,充当光的分束和重组耦合器。对FMF的包层进行氢氟酸腐蚀,然后通过自然沉积法在腐蚀后的FMF包层上涂覆一层氧化石墨烯(GO)薄膜。GO的折射率会随着水分子的吸附而变化。结果,MZI的相位差发生变化,谐振凹陷波长随环境相对湿度(RH)的变化而移动。实验分别在30 - 55%和55 - 95%的RH范围内实现了0.191和0.061 nm/%RH的高湿度灵敏度。所提出的传感器具有高灵敏度、紧凑尺寸和简单制造工艺,在化学传感器和生化检测领域具有诱人的应用前景。