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Temperature and bending simultaneous sensing properties of cascaded long- and short-period gratings

机译:级联长,短周期光栅的温度和弯曲同时感测特性

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摘要

Based on the coupled-mode theory, temperature and bending sensing properties of cascaded long-and short-period grating (CLBG) are analyzed by using the transfer matrix method. Two resonance peaks are produced in the reflection spectrum of CLBG when the resonance wavelengths of the two gratings are approximately equal. The two resonance peaks shift along the longer wavelength as temperature increases, and the peak reflectivity at the longer wavelength decreases monotonically at the same time. When CLBG is bent, the peak reflectivity at the longer wavelength increases evenly while the resonance wavelengths remain unchanged. This tells us that CLBG can be used to sense temperature and bending simultaneously. Experimentally, the temperature and bending simultaneous sensing properties of CLBG are discussed. The temperature sensitivities corresponding to the peak reflectivity and the resonance wavelength are -0.03718 dB/℃ and 0.011846 nm/℃, respectively; the bending sensitivities are 9.878 dB/m~(-1) and 0, accordingly. This proves that CLBG has important application value in multipara-meter sensing and measurement fields.
机译:基于耦合模理论,采用转移矩阵法分析了级联长短周期光栅(CLBG)的温度和弯曲传感特性。当两个光栅的共振波长近似相等时,在CLBG的反射光谱中产生两个共振峰。随着温度升高,两个共振峰沿较长的波长移动,同时较长波长处的峰值反射率同时单调降低。当CLBG弯曲时,较长波长的峰值反射率均匀增加,而谐振波长保持不变。这告诉我们CLBG可用于同时感测温度和弯曲。实验上讨论了CLBG的温度和弯曲同时感测特性。对应于峰值反射率和共振波长的温度敏感性分别为-0.03718 dB /℃和0.011846 nm /℃。弯曲灵敏度分别为9.878 dB / m〜(-1)和0。这证明CLBG在多参数传感和测量领域具有重要的应用价值。

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