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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Enhancement of refractive index sensitivity of Bragg-gratings based optical waveguide sensors using a metal under-cladding
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Enhancement of refractive index sensitivity of Bragg-gratings based optical waveguide sensors using a metal under-cladding

机译:基于金属覆盖物的基于布拉格光栅传感器的折射率灵敏度的增强

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摘要

We theoretically analyze, a compact Bragg grating inscribed metal clad leaky ridge waveguide (MCLRW) as a refractive index sensor which can be integrated with other elements on a single chip. The grating is considered to be written in the photosensitive core. Using the quasi-TE mode of the structure, it is shown that a metal layer underneath the core enhances the evanescent field in the ambient region resulting in a significant increase in the ambient refractive index sensitivity. The obtained sensitivity and the figure of merit of the considered sensor structure are found to be almost 13-14 times higher than that of a ridge waveguide without any metal layer. Further, due to the higher modal loss of the quasi-TM mode, no in-line polarizer is required to assemble with the device. Effect of the loss due to metal layer on the peak reflectivity as well as bandwidth of the spectrum is also discussed.
机译:理论上,理论上分析,紧凑的布拉格光栅铭刻金属包覆泄漏脊波导(MCLRW)作为折射率传感器,可以与单个芯片上的其他元件集成。 将光栅被认为是用光敏核心写入的。 使用结构的Quasi-TE模式,示出了核心下方的金属层增强了环境区域中的渐逝场,导致环境折射率灵敏度的显着增加。 所获得的敏感性和所考虑的传感器结构的优点是比没有任何金属层的脊波导高的近13-14倍。 此外,由于准TM模式的模态损耗较高,因此不需要在线偏振器与器件组装。 还讨论了由于金属层对峰值反射率的影响以及频谱带宽的影响。

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