首页> 外文会议>Conference on Photonics North 2006; 20060605-08; Quebec City(CA) >High-sensitivity refractive index sensor based on low order cladding mode resonance in long-period grating with high refractive index coating
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High-sensitivity refractive index sensor based on low order cladding mode resonance in long-period grating with high refractive index coating

机译:高折射率涂层长周期光栅中基于低阶包层模共振的高灵敏度折射率传感器

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Deposition of a high refractive index (RI) overlay on long-period grating (LPG) was recently studied to enhance the sensitivity of LPG sensor to the surrounding ambient RI changes and offset the sensitive operational range of LPG RI sensor to low ambient RI. The enhancement mechanism relies on cladding mode reorganization due to the existence of the overlay. In this paper, the reorganization of the cladding mode in a cladding radius reduced LPG coated with high RI overlay is studied with full vector transfer matrix method. The dependence of the cladding modes effective indices on the fiber parameters and ambient RI is systematically investigated. Based on the simulation result, an LPG refractive index sensor optimization procedure is proposed, in which the grating period is set as an adaptive parameter and the cladding radius of the LPG is reduced. It is found that by using the proposed optimization method, the notch band corresponding to low order cladding mode resonance has higher sensitivity to the ambient refractive index. It is shown that an ambient refractive index sensitivity as large as 4012nm /RI can be achieved, representing a 3-fold sensitivity enhancement as compared to the best result obtained from the reported structure in which the high order cladding mode resonate notch wavelength was employed in sensing.
机译:最近研究了在长周期光栅(LPG)上沉积高折射率(RI)覆盖层的方法,以增强LPG传感器对周围环境RI变化的灵敏度,并使LPG RI传感器对低环境RI的敏感工作范围发生偏移。由于存在覆盖,增强机制依赖于包层模式重组。本文采用全矢量转移矩阵方法研究了在覆层半径减小的LPG上覆有高RI覆盖层的覆层模式的重组过程。系统地研究了包层模式有效指数对光纤参数和环境光强的依赖性。基于仿真结果,提出了一种LPG折射率传感器的优化程序,其中将光栅周期设置为自适应参数,并减小了LPG的包层半径。发现通过使用所提出的优化方法,与低阶包层模式谐振相对应的陷波带对环境折射率具有更高的灵敏度。结果表明,与从报道的结构获得的最佳结果相比,可以实现高达4012nm / RI的环境折射率灵敏度,灵敏度提高了3倍,在该结构中,采用了高阶包层模式共振陷波波长。感应。

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