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Sensitivity characteristics of LPFGs inscribed in FMF

机译:FMF标记的LPFG的灵敏度特性

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Few mode fiber (FMF) has been studied a lot in recent years. It is told that the co-propagating coupling between different modes in few mode long-period fiber gratings (FM-LPFGs) can get a large sensitivity in sensing measurement. In this paper, we present a comprehensive simulation about the sensing sensitivity of long-period fiber gratings (LPFGs) inscribed in few mode fiber (FMF). We recognize a sensitivity factor which contributes a lot to the sensing sensitivity, and calculate the value in FMF. Our analysis reveals a high sensitivity factor at the resonance wavelength of 1550nm when the resonant cladding mode order equals to 20. Our simulation proves that LPFGs inscribed in FMF, comparing with sing mode fiber (SMF), have a much better sensing performance in the temperature, strain and surrounding refractive index (RI) when the cladding mode order is closed to 20. Particularly, the maximum value of RI sensitivity can reach 1512 nm/10−3 in FMF when the surrounding RI equals to 1.43, five times as much as the value in SMF.
机译:近年来,很少有人对光纤(FMF)进行过研究。据了解,在少数模式长周期光纤光栅(FM-LPFG)中,不同模式之间的共传播耦合可以在传感测量中获得较大的灵敏度。在本文中,我们提出了关于少模光纤(FMF)中刻写的长周期光纤光栅(LPFG)的感测灵敏度的综合模拟。我们认识到对感应灵敏度有很大贡献的灵敏度因子,并以FMF计算值。我们的分析表明,当谐振包层模阶数等于20时,在1550nm的谐振波长处有一个高灵敏度因子。我们的仿真证明,与单模光纤(SMF)相比,FMF中包含的LPFG在温度下的传感性能要好得多。 ,当包层模式阶数接近20时,应变和周围折射率(RI)。特别地,当周围RI等于1.43时,在FMF中RI灵敏度的最大值可以达到1512 nm / 10-3,是其的五倍。 SMF中的值。

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