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Multimode interference refractive index sensor based on coreless fiber

机译:基于无芯光纤的多模干涉折射率传感器

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A multimode interference refractive index (RI) sensor based on the coreless fiber was numerically and experimentally demonstrated. Two identical single mode fibers (SMF) are spliced at both ends of a section of the coreless fiber which can be considered as the equivalent weakly guiding multimode fiber (MMF) with a step-index profile when the surrounding refractive index (SRI) is lower than that of the coreless fiber. Thus, it becomes the conventional single-mode multimode single-mode (SMS) fiber structure but with a larger core size. The output spectra will shift along with the changes in the SRI owing to the direct exposure of the coreless fiber. The output spectra under different SRIs were numerically studied, as well as the sensitivities with different lengths and diameters of the coreless fiber. The predication and calculation showed the good agreement with the experimental results. The proposed RI sensor proved to be feasible by verification experiments, and the relative error was merely 0.1% which occupied preferable sensing performance and practicability.
机译:数值和实验证明了基于无芯光纤的多模干涉折射率(RI)传感器。两根相同的单模光纤(SMF)拼接在无芯光纤部分的两端,当周围折射率(SRI)较低时,可以将其视为具有阶跃折射率分布的等效弱导多模光纤(MMF)比无芯光纤因此,它成为常规的单模多模单模(SMS)光纤结构,但纤芯尺寸更大。由于无芯光纤的直接暴露,输出光谱将随着SRI的变化而移动。数值研究了不同SRI下的输出光谱,以及不同长度和直径的无芯光纤的灵敏度。预测和计算结果与实验结果吻合良好。经验证实验证明,所提出的RI传感器是可行的,相对误差仅为0.1%,具有较好的传感性能和实用性。

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