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A sensor based on D-shaped photonic crystal fiber with elliptical holes

机译:基于D形光子晶体纤维的传感器,椭圆形孔

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摘要

A sensor based on D-shaped photonic crystal fiber (PCF) with elliptical holes is designed and numerical studied by finite element method (FEM). The refractive index (RI) of analyte can be detected by using surface plasma resonance effect and optical fiber with elliptical holes can solve the phase matching problem. The size of central hole, the major axis of the two elliptical holes near polishing plane in first layer and polishing depth are adjusted to explore the influence of these parameters on wavelength sensitivity and amplitude sensitivity of the sensor. Polishing depth has a great influence on wavelength sensitivity of the sensor. As a result, higher sensitivity is obtained with larger polishing depth in the range of 1.33-1.39 and smaller polishing depth is more suitable with RI changing from 1.39-1.42. The wavelength sensitivity of the designed sensor is 10,200 nm/RIU, which means the designed sensor has a promising application prospect.
机译:设计了一种基于D形光子晶体纤维(PCF)的传感器,通过有限元法(FEM)设计了具有椭圆形孔的数值和数值。 可以通过使用表面等离子体谐振效应和具有椭圆形孔的光纤来检测分析物的折射率(RI)可以解决相位匹配问题。 中心孔的尺寸,调整了第一层抛光平面附近的两个椭圆孔的主轴,以探讨这些参数对传感器的波长灵敏度和幅度灵敏度的影响。 抛光深度对传感器的波长灵敏度有很大影响。 结果,在1.33-1.39的范围内,在1.33-1.39的范围内获得更高的灵敏度,较小的抛光深度更适合于1.39-1.42的RI变化。 设计传感器的波长灵敏度为10,200nm / Riu,这意味着设计的传感器具有有希望的应用前景。

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