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Characteristics of Coated Long-Period Fiber Grating Based on Mode Transition and Dual-Peak Resonance

机译:基于模式转换和双峰共振的涂层长周期光纤光栅特性

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The mode transition of high-order cladding modes in a coated long-period fiber grating (LPFG) was studied using coupled-mode theory, the response characteristic of cladding mode effective index was analyzed with increasing overlay thickness. It was found through analyses that the shift of resonant wavelength in the mode transition region was larger than that in the non-mode transition region. Furthermore, the phase-matching curves for 19th cladding mode was investigated when the overlay thickness was located in the mode transition and non-mode transition regions, the shift between two resonance wavelengths of dual peak in the mode transition region was bigger than that in non-transition mode region. The response characteristics of film refractive index of coated LPFG was investigated for a high-order cladding mode while the overlay thickness was located in mode transition and non-transition mode regions, the positions and amplitudes of the dual peak of the high-order cladding mode had different changes when the film refractive index vary slightly. The sensor sensitivity was defined and calculated. The result shows that the sensitivity of film refractive index could reach 69.12 and 0 respectively, when the overlay thickness was located in mode transition and non-mode transition regions. The corresponding resolutions of film refractive index can be available to 10~(-7) in mode transition region.
机译:利用耦合模理论研究了包膜长周期光纤光栅(LPFG)中高阶包层模的模态转换,分析了包层模有效指数随覆盖厚度的增加而变化的特性。通过分析发现,在模式过渡区域中谐振波长的偏移大于在非模式过渡区域中的谐振波长的偏移。此外,研究了当覆盖层厚度位于模式过渡区和非模式过渡区时,第19包层模式的相位匹配曲线,在模式过渡区中双峰的两个共振波长之间的位移大于非模式过渡区中的双峰。 -过渡模式区域。研究了覆膜LPFG在高阶熔覆模式下薄膜折射率的响应特性,当覆盖层厚度位于模式转变和非转变模式区域时,高阶熔覆模式的双峰的位置和幅度当膜的折射率略有变化时会有不同的变化。定义并计算传感器的灵敏度。结果表明,当覆盖层厚度位于模式过渡区和非模式过渡区时,薄膜折射率的灵敏度分别可以达到69.12和0。膜折射率的相应分辨率在模式转换区域中可以达到10〜(-7)。

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