Gastón Ainhoa, Pérez Fátima, Sevilla Joaquín
Department of Electric and Electronic Engineering, Public University of Navarre, Arrosadía 31006 Pamplona, Spain.
Appl Opt. 2004 Jul 20;43(21):4127-32. doi: 10.1364/ao.43.004127.
We describe a fiber-optic relative-humidity (RH) sensor comprising a moisture-sensitive overlay on a single-mode side-polished fiber. The hygroscopic polymeric material deposited was polyvinyl alcohol (PVA), which proved to have good adherence and stability. The film reached a fast equilibrium with atmospheric moisture (in less than 1 min), inducing changes in the output optical power of approximately 10 dB for the 70%-90% RH range. To yield a low-cost device, single-mode standard communication fibers were used; therefore all the components of the sensor can be commercial, mass-produced telecommunication devices. The experimental results obtained are consistent with the expected behavior of the system; the output power decreases because of losses in the polished region of the fiber as the refractive index of its external medium approaches the fiber core value. Because the external medium is PVA film, its refractive index changes in response to its water content.
我们描述了一种光纤相对湿度(RH)传感器,它由单模侧面抛光光纤上的湿度敏感覆盖层组成。沉积的吸湿聚合物材料是聚乙烯醇(PVA),事实证明它具有良好的附着力和稳定性。该薄膜能与大气湿度迅速达到平衡(不到1分钟),在70%-90%的相对湿度范围内,输出光功率会产生约10 dB的变化。为了制造低成本设备,使用了单模标准通信光纤;因此,传感器的所有组件都可以是商业化的、大规模生产的电信设备。获得的实验结果与系统的预期行为一致;随着外部介质的折射率接近光纤纤芯值,由于光纤抛光区域的损耗,输出功率会降低。因为外部介质是PVA薄膜,其折射率会随含水量而变化。