Liu Dejun, Huang Ziyi, Wu Qiang, Yan Long, Tian Ke, Shen Changyu, Farrell Gerald, Semenova Yuliya, Wang Pengfei
Opt Lett. 2022 Oct 1;47(19):4849-4852. doi: 10.1364/OL.468787.
The construction of multiple light guidance mechanisms in a hollow-core fiber (HCF) structure is a popular way to realize the simultaneous measurement of multiple parameters. In this work, a partial coating method to excite multiple anti-resonant light guidance mechanisms (ARLGMs) in an HCF structure for the simultaneous measurement of multiple parameters is proposed. As an example, a double ARLGM based on a partially polyimide (PI)-coated HCF structure for the simultaneous measurement of relative humidity (RH) and temperature is demonstrated theoretically and experimentally. The dip (dip II) produced by the PI-coated HCF section shifts linearly with surrounding RH changes with a sensitivity of circa 58.6 ± 0.77 pm/%RH, while the dip (dip I) produced by the bare HCF section (with an air coating layer) is insensitive to RH changes. In addition, both types of dips have linear responses to temperature variations, with similar sensitivities of ∼ 17 pm/°C. Hence, the proposed sensor structure can be used as an RH sensor that is also capable of compensating for local temperature fluctuations. More importantly, the simultaneous measurement of multiple parameters (such as biomarkers) is possible using the proposed method provided the proper sensing materials are partially coated onto the HCF surface.
在空心光纤(HCF)结构中构建多种光导机制是实现多个参数同时测量的一种常用方法。在这项工作中,提出了一种部分涂覆方法,用于在HCF结构中激发多种反谐振光导机制(ARLGMs)以同时测量多个参数。例如,从理论和实验上证明了一种基于部分聚酰亚胺(PI)涂覆的HCF结构的双ARLGM,用于同时测量相对湿度(RH)和温度。PI涂覆的HCF部分产生的凹陷(凹陷II)随周围RH变化呈线性移动,灵敏度约为58.6±0.77 pm/%RH,而裸HCF部分(有空气涂层)产生的凹陷(凹陷I)对RH变化不敏感。此外,两种类型的凹陷对温度变化都有线性响应,灵敏度相似,约为17 pm/°C。因此,所提出的传感器结构可用作RH传感器,还能够补偿局部温度波动。更重要的是,如果将适当的传感材料部分涂覆在HCF表面,使用所提出的方法可以同时测量多个参数(如生物标志物)。