Wang Dongying, Yi Zao, Ma Guolu, Dai Bo, Yang Junbo, Zhang Jianfa, Yu Yang, Liu Chao, Wu Xianwen, Bian Qiang
Joint Laboratory for Extreme Conditions Matter Properties, Key Laboratory of Manufacturing Process Testing Technology of Ministry of Education, State Key Laboratory of Environment-Friendly Energy Materials, Southwest University of Science and Technology, Mianyang 621010, China.
College of Liberal Arts and Sciences, Hunan Provincial Key Laboratory of Novel Nano-Optoelectronic Information Materials and Devices, National University of Defense Technology, Changsha 410073, China.
Phys Chem Chem Phys. 2022 Sep 14;24(35):21233-21241. doi: 10.1039/d2cp02778j.
In this paper, a dual-parameter sensor based on surface plasmon resonance (SPR)-photonic crystal fiber (PCF) is proposed, which can be applied in detecting the magnetic field and temperature. In this sensor, two elliptical channels are designed on both sides of the fiber core. The left channel (Ch 1) is coated with gold film and filled with magnetic fluid (MF) to achieve a response to the magnetic field and temperature using SPR. The right channel (Ch 2) is coated with gold film as well as TaO film to improve the SPR sensing performance. Finally, Ch 2 is filled with polydimethylsiloxane (PDMS) to achieve a response to the temperature. The mode characteristics, structural parameters and sensing performance are investigated by the finite element method. The results show that when the magnetic field is in the range of 50-130 Oe, the magnetic field sensitivities of Ch 1 and Ch 2 are 65 pm Oe and 0 pm Oe, respectively. When the temperature is in the range of 17.5-27.5 °C, the temperature sensitivities of Ch 1 and Ch 2 are 520 pm °C and 2360 pm °C, respectively. By establishing and demodulating a sensing matrix, the sensor can not only measure the temperature and magnetic field simultaneously but also solve the temperature cross-sensitivity problem. In addition, when the temperature exceeds a certain value, the proposed sensor is expected to achieve dual-parameter sensing without a matrix. The proposed dual-parameter SPR-PCF sensor has a unique structure and excellent sensing performance, which are important for the simultaneous sensing of multiple basic physical parameters.
本文提出了一种基于表面等离子体共振(SPR)-光子晶体光纤(PCF)的双参数传感器,可用于检测磁场和温度。在该传感器中,在光纤纤芯两侧设计了两个椭圆形通道。左侧通道(通道1)涂有金膜并填充有磁流体(MF),以利用SPR实现对磁场和温度的响应。右侧通道(通道2)同样涂有金膜以及TaO膜,以提高SPR传感性能。最后,通道2填充有聚二甲基硅氧烷(PDMS)以实现对温度的响应。通过有限元方法研究了模式特性、结构参数和传感性能。结果表明,当磁场在50 - 130奥斯特范围内时,通道1和通道2的磁场灵敏度分别为65皮米/奥斯特和0皮米/奥斯特。当温度在17.5 - 27.5℃范围内时,通道1和通道2的温度灵敏度分别为520皮米/℃和2360皮米/℃。通过建立和解调传感矩阵,该传感器不仅可以同时测量温度和磁场,还能解决温度交叉敏感问题。此外,当温度超过一定值时,所提出的传感器有望无需矩阵实现双参数传感。所提出的双参数SPR - PCF传感器具有独特的结构和优异的传感性能,这对于同时传感多个基本物理参数具有重要意义。