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Long period fiber grating based temperature-compensated high performance sensor for bio-chemical sensing applications

机译:基于长周期光纤光栅的温度补偿高性能传感器,适用于生化传感应用

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摘要

We report a stable, robust, and extremely sensitive refractive index sensor based on long period gratings written in optical fibers (LPFGs). By splitting the LPFG transmission spectrum at its phase-matching turnaround point, we show that it is possible to achieve an ultra-high sensitivity (~2500nm per refractive index unit) for biological/chemical samples. The splitting has been achieved by introducing an optical path difference of ~0.39 μm between the core and cladding modes within the grating region of the optical fiber. In contrast to the widely used surface plasmon resonance (SPR) based sensors, no bulky prism, circulator or metal deposition is required in our sensor, making the present sensor extremely accurate, very compact and cost effective. We also demonstrate that a simultaneous measurement of refractive index and temperature/strain can be carried out using this sensor.
机译:我们报告了基于光纤(LPFG)中写入的长周期光栅的稳定,坚固且极其灵敏的折射率传感器。通过在其相位匹配转折点处分裂LPFG传输光谱,我们表明可以实现对生物/化学样品的超高灵敏度(每个折射率单位约2500nm)。通过在光纤的光栅区域内的芯模和包层模之间引入〜0.39μm的光程差来实现分裂。与广泛使用的基于表面等离子体共振(SPR)的传感器相比,我们的传感器不需要笨重的棱镜,环行器或金属沉积物,从而使本传感器非常精确,非常紧凑且具有成本效益。我们还证明了使用该传感器可以同时测量折射率和温度/应变。

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