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Refractive index sensitivity characteristics near the dispersion turning point of the multimode microfiber-based Mach–Zehnder interferometer

机译:基于多模微纤维的马赫曾德尔干涉仪的色散转折点附近的折射率灵敏度特性

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摘要

The turning point of the refractive index (RI) sensitivity based on the multimode microfiber (MMMF) in-line Mach–Zehnder interferometer (MZI) is observed. By tracking the resonant wavelength shift of the MZI generated between the HE11 and HE12 modes in the MMMF, the surrounding RI (SRI) could be detected. Theoretical analysis demonstrates that the RI sensitivity will reach ±∞ on either side of the turning point due to the group effective RI difference (퐺) approaching zero. Significantly, the positive sensitivity exists in a very wide fiber diameter range, while the negative sensitivity can be achieved in a narrow diameter range of only 0.3 μm. Meanwhile, the experimental sensitivities and variation trend at different diameters exhibit high consistency with the theoretical results. High RI sensitivity of 10777.8 nm/RIU (RI unit) at the fiber diameter of 4.6 μm and the RI around 1.3334 is realized. The discovery of the sensitivity turning points has great significance on trace detection due to the possibility of ultrahigh RI sensitivity.
机译:观察到基于多模微纤维(MMMF)在线马赫曾德尔干涉仪(MZI)的折射率(RI)灵敏度的转折点。通过跟踪MMMF中在HE11和HE12模式之间生成的MZI的谐振波长偏移,可以检测到周围的RI(SRI)。理论分析表明,由于组的有效RI差(퐺)接近零,所以RI灵敏度在转折点的任一侧将达到±∞。显着地,在非常宽的纤维直径范围内存在正灵敏度,而在仅0.3μm的狭窄直径范围内可以实现负灵敏度。同时,不同直径的实验灵敏度和变化趋势与理论结果具有高度一致性。在4.6μm的光纤直径下实现了10777.8 nm / RIU(RI单位)的高RI灵敏度,RI约为1.3334。由于极高的RI灵敏度,发现灵敏度转折点对痕量检测具有重要意义。

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