IEEE Photonics Technology Letters · 2015 · 29 citations · 23 references
Photonic SensorOptical MaterialsEngineeringFiber OpticsHumidity SensorRelative HumidityGh ShiftOptical PropertiesOptical SystemsOptical SpectroscopyPlanar Waveguide SensorNanophotonicsPhotonicsFiber Optic SensingEnhanced Goos-hänchenOptical SensorsApplied PhysicsOptical SensorWave-enhanced Goos–hänchen Shift
An enhanced Goos-Hänchen (GH) shift, which is attributed to the oscillating wave propagating in the polyimide-coated symmetrical metal cladding waveguide, is employed to optically monitor the relative humidity (RH). The interaction of polyimide with the water molecules can change the waveguide structure parameters (thickness and refractive index) and thus alter the magnitude of GH shift. In our experiment, the magnitude of GH shift is measured during the RH variation from 43% to 73% with a step of 5% and the corresponding desiccation process. The proposed optical RH sensor exhibits good linearity and high sensitivity, meanwhile provides short response time and favorable stability over a long period. In addition, since the GH shift signal is position encoded, our sensing mechanism is immune to the intensity fluctuation in the light source.
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Goos-Hänchen shift surface plasmon resonance sensor
Xiaobo Yin, Lambertus Hesselink · Applied Physics Letters · 2006 · 276 citations · Full text
Chitosan based fiber-optic Fabry–Perot humidity sensor
L.H. Chen, Tao Li, Chi Chiu Chan et al. · Sensors and Actuators B Chemical · 2012 · 249 citations