Mohan Sunil, Khijwania Sunil K
Appl Opt. 2024 Jan 1;63(1):179-185. doi: 10.1364/AO.507936.
The main objective of the present research is to develop an optical fiber relative humidity (RH) sensor with a high sensitivity, linear response over a wide dynamic range, and optimum response/recovery times by employing the simplest optical fiber sensing configuration. An optical fiber RH sensor that exploits the intensity modulation scheme through evanescent wave absorption spectroscopy and fulfills the objective is reported here. The fiber sensor employs graphene oxide (GO) diffused silica nanostructured thin sensing film as the cladding on the centrally decladded straight and uniform multimode optical fiber. Detailed experimental investigations are carried out to analyze the response characteristics of the proposed sensor. In comparison to other GO based optical fiber RH sensors, a linear response over the widest dynamic range (15.0%-95.3%RH) and shortest (fastest) response/recovery times (0.1436 s/0.1547 s) are observed for the proposed sensor. The linear sensitivity for the developed sensor is observed to be 0.1036 dB/%RH. In addition, the proposed sensor exhibits a very good degree of reversibility, reliability, and repeatability.
本研究的主要目标是通过采用最简单的光纤传感配置,开发一种具有高灵敏度、在宽动态范围内呈线性响应且具有最佳响应/恢复时间的光纤相对湿度(RH)传感器。本文报道了一种利用倏逝波吸收光谱强度调制方案并实现该目标的光纤RH传感器。该光纤传感器采用氧化石墨烯(GO)扩散的二氧化硅纳米结构薄传感膜作为中心去包层的直且均匀的多模光纤的包层。进行了详细的实验研究以分析所提出传感器的响应特性。与其他基于GO的光纤RH传感器相比,所提出的传感器在最宽的动态范围(15.0% - 95.3%RH)内呈线性响应,并且具有最短(最快)的响应/恢复时间(0.1436 s/0.1547 s)。所开发传感器的线性灵敏度为0.1036 dB/%RH。此外,所提出的传感器具有非常好的可逆性、可靠性和可重复性。