Cheng Fei, Yang Xiaodong, Gao Jie
Opt Lett. 2014 Jun 1;39(11):3185-8. doi: 10.1364/OL.39.003185.
An infrared refractive index sensor based on plasmonic perfect absorbers for glucose concentration sensing is experimentally demonstrated. Utilizing substantial absorption contrast between a perfect absorber (∼98% at normal incidence) and a non-perfect absorber upon the refractive index change, a maximum value of figure of merit (FOM) about 55 and a bulk wavelength sensitivity about 590 nm/RIU are achieved. The demonstrated sensing platform provides great potential in improving the performance of plasmonic refractive index sensors and developing future surface enhanced infrared spectroscopy.
实验展示了一种基于等离子体完美吸收体的用于葡萄糖浓度传感的红外折射率传感器。利用完美吸收体(垂直入射时吸收率约为98%)和非完美吸收体在折射率变化时的显著吸收对比度,实现了约55的品质因数(FOM)最大值和约590 nm/RIU的体波长灵敏度。所展示的传感平台在提高等离子体折射率传感器性能和发展未来表面增强红外光谱方面具有巨大潜力。