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Numerical study of refractive index sensing based on the anti-guide property of a depressed-index core photonic crystal fiber

机译:基于低折射率纤芯光子晶体光纤抗波导特性的折射率传感数值研究

摘要

Refractive index (RI) sensing based on the anti-guiding property of a depressed-index core photonic crystal fiber (PCF) is studied. A new type of RI sensor is formed by adding a hole to the core of a conventional index guiding PCF for the purpose of measurand filling and the depressed-index core formation. The dependencies of measurement resolution and dynamic range on the structural parameters of the RI sensor are investigated. RI sensors filled with the measurand covering a refractive index range from 1.328 to 1.445 are numerically simulated. Simulation results show that the measurement resolution from 9.32 × 10 -7 to 1.23 × 10 -7 can be achieved by means of wavelength measurement with an optical spectrum analyzer with 0.01 nm resolution. Also, problem caused by the existence of the photonic bandgap (PBG) mode which may influence the feasibility of the RI sensing mechanism is considered.
机译:研究了基于低折射率芯光子晶体光纤(PCF)的抗导引特性的折射率(RI)感测。新型RI传感器是通过在常规折射率引导PCF的芯上增加一个孔来形成的,以测量和填充折射率较低的芯,从而形成这种传感器。研究了测量分辨率和动态范围对RI传感器结构参数的依赖性。数值模拟了填充被测物的RI传感器,其折射率范围为1.328至1.445。仿真结果表明,通过使用分辨率为0.01 nm的光谱分析仪进行波长测量,可以实现从9.32×10 -7到1.23×10 -7的测量分辨率。此外,考虑了由光子带隙(PBG)模式的存在引起的问题,该问题可能会影响RI感应机制的可行性。

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