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首页> 外文期刊>Journal of Lightwave Technology >Femtosecond Laser Inscribed Tilted Gratings for Leaky Mode Excitation in Optical Fibers
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Femtosecond Laser Inscribed Tilted Gratings for Leaky Mode Excitation in Optical Fibers

机译:Femtosecond激光刻在光纤中的泄漏模式励磁倾斜的光栅

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摘要

We consider the excitation of leaky mode resonances (LMRs) in an optical fiber that originate from light coupling initiated by small angle (<21 degrees) tilted fiber Bragg gratings (TFBGs), through sub-micrometric grating inscription using a femtosecond laser. The femtosecond laser inscription triggers the interaction between the fiber's guided mode and backward coupling to the LMRs, a process that requires tight control of the grating period, reflection angle, order and the strength of the modified refractive index. The TFBG itself exhibits very low spectral polarization dependence, whereas the LMRs display strong polarization dependence in specific wavelength ranges, allowing for easy mode selection and opening avenues for various applications related to sensing and optical filtering. The tailored-for-LMR-generation optical filters were characterized for torsion, temperature and strain, exhibiting a very large negative strain sensitivity of -2 pm/mu epsilon and a temperature sensitivity of 14.73 pm/degrees C that when compared with the grating response led to an exceptionally large strain response and remarkably well-behaved conversion matrix for the separation of strain and temperature in a single measurement. The LMR also proves to be insensitive to bend. The nature of LMRs is considered and confirmed by measuring their radiation field using an infrared camera, simulating their resonance wavelength using a finite element method and by experimentally observing their behavior, while changing the ambient refractive index.
机译:我们考虑通过使用Femtosecond激光的亚微米光栅铭文起源于由小角度(<21度)倾斜的光纤布拉格光栅(TFBG)发起的光耦合的光纤泄漏模式共振(LMR)的激发。飞秒激光题字触发光纤的导模和后向耦合到LMR之间的相互作用,该过程需要紧密控制光栅周期,反射角度,顺序和修改折射率的强度。 TFBG本身具有非常低的光谱偏振依赖性,而LMRS在特定波长范围内显示出强的偏振依赖性,允许易于模式选择和打开途径,用于各种与感测和光学滤波有关的应用。定制的LMR发电光学过滤器的特征在于扭转,温度和菌株,表现出-2μm/ muε的非常大的负应变敏感性和14.73μm/℃的温度敏感性,与光栅反应相比导致具有异常大的应变响应和显着良好的转换矩阵,用于在单个测量中分离应变和温度。 LMR还证明弯曲不敏感。通过使用红外摄像机测量其辐射场,使用有限元方法测量它们的谐振波长来考虑和确认LMR的性质,并通过实验地观察它们的行为,同时改变环境折射率。

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