Burgmeier Jörg, Feizpour Amin, Schade Wolfgang, Reinhard Björn M
Opt Lett. 2015 Feb 15;40(4):546-9. doi: 10.1364/OL.40.000546.
A novel fiber optical refractive index sensor based on gold nanoshells immobilized on the surface of an etched single-mode fiber including a Bragg grating is demonstrated. The nanoparticle coating induces refractive index dependent waveguide losses, because of the variation of the evanescently guided part of the light. Hence the amplitude of the Bragg reflection is highly sensitive to refractive index changes of the surrounding medium. The nanoshell functionalized fiber optical refractive index sensor works in reflectance mode, is suitable for chemical and biochemical sensing, and shows an intensity dependency of 4400% per refractive index unit in the refractive index range between 1.333 and 1.346. Furthermore, the physical length of the sensor is smaller than 3 mm with a diameter of 6 μm, and therefore offers the possibility of a localized refractive index measurement.
展示了一种新型光纤折射率传感器,该传感器基于固定在包含布拉格光栅的蚀刻单模光纤表面的金纳米壳。由于光的倏逝导波部分的变化,纳米颗粒涂层会引起与折射率相关的波导损耗。因此,布拉格反射的幅度对周围介质的折射率变化高度敏感。纳米壳功能化光纤折射率传感器工作在反射模式,适用于化学和生化传感,并且在1.333至1.346的折射率范围内,每折射率单位的强度依赖性为4400%。此外,该传感器的物理长度小于3毫米,直径为6微米,因此提供了进行局部折射率测量的可能性。