Liu Yin, Li Xiaowei, Chen Yufeng, Geng Guangzhou, Li Junjie, Wang Yongtian, Huang Lingling
Beijing Engineering Research Center of Mixed Reality and Advanced Display, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China.
Laser Micro/Nano-Fabrication Laboratory, School of Mechanical Engineering, Beijing Institute of Technology, Beijing 100081, China.
Nanophotonics. 2021 Nov 2;11(1):111-118. doi: 10.1515/nanoph-2021-0529. eCollection 2022 Jan.
In a wide range of applications such as healthcare treatment, environmental monitoring, food processing and storage, and semiconductor chip manufacturing, relative humidity (RH) sensing is required. However, traditional fiber-optic humidity sensors face the challenges of miniaturization and indirectly obtaining humidity values. Here, we propose and demonstrate an optical barcode technique by cooperating with RH meta-tip, which can predict the humidity values directly. Such RH meta-tip is composed of fiber-optic sensor based on surface plasmon resonance (SPR) effect and graphene oxide film as humidity sensitizer. While SPR sensor is composed of multimode fiber (MMF) integrated with metallic metasurface. Dynamic time warping (DTW) algorithm is used to obtain the warp path distance (WPD) sequence between the measured reflection spectrum and the spectra of the precalibrated database. The distance sequence is transformed into a pseudo-color barcode, and the humidity value is corresponded to the lowest distance, which can be read by human eyes. The RH measurement depends on the collective changes of the reflection spectrum rather than tracking a single specific resonance peak/dip. This work can open up new doors to the development of a humidity sensor with direct RH recognition by human eyes.
在医疗保健治疗、环境监测、食品加工与储存以及半导体芯片制造等广泛应用中,都需要进行相对湿度(RH)传感。然而,传统的光纤湿度传感器面临着小型化以及间接获取湿度值的挑战。在此,我们提出并演示了一种通过与RH元尖端配合的光学条形码技术,该技术可以直接预测湿度值。这种RH元尖端由基于表面等离子体共振(SPR)效应的光纤传感器和作为湿度敏化剂的氧化石墨烯薄膜组成。而SPR传感器由集成了金属超表面的多模光纤(MMF)构成。动态时间规整(DTW)算法用于获取测量反射光谱与预校准数据库光谱之间的规整路径距离(WPD)序列。该距离序列被转换为伪彩色条形码,湿度值对应于最低距离,可由人眼读取。RH测量依赖于反射光谱的集体变化,而不是跟踪单个特定的共振峰/谷。这项工作可以为开发一种能够直接由人眼识别RH的湿度传感器开辟新的道路。