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基于空芯辅助双芯光纤的具有分段干涉光谱的光纤内马赫-曾德尔干涉仪用于折射率传感。

In-fiber Mach-Zehnder interferometer with piecewise interference spectrum based on hole-assisted dual-core fiber for refractive index sensing.

作者信息

Yang J, Yang M, Guan C Y, Shi J H, Zhu Z, Li P, Wang P F, Yang J, Yuan L B

出版信息

Opt Express. 2018 Jul 23;26(15):19091-19099. doi: 10.1364/OE.26.019091.

Abstract

We demonstrate theoretically and experimentally a novel in-fiber Mach-Zehnder interferometer (MZI) with piecewise interference spectrum. The interferometer is constructed by splicing a short section of single eccentric hole-assisted dual-core fiber (SEHADCF) to two single mode fibers (SMFs) with a lateral-offset. Due to the offset splicing and the small distance between cores, different core modes in two cores of the SEHADCF can be excited to form interference at the different wavelength ranges. The discontinuous region of the interference spectrum can be employed as a mark to identify the order of the interference valley. The in-fiber MZI is experimentally investigated as a refractive index sensor, the sensitivity of 353.9 nm/RIU is obtained in the RI range of 1.335 ~1.395. The in-fiber MZI with a high sensitivity has a great potential in biological and chemical applications. Especially, due to the ability to identify the order of interference valleys by the discontinuous region, the proposed in-fiber MZI can improve the reliability of fiber sensors in remote monitoring applications.

摘要

我们通过理论和实验证明了一种具有分段干涉光谱的新型光纤马赫-曾德尔干涉仪(MZI)。该干涉仪是通过将一小段单偏心孔辅助双芯光纤(SEHADCF)横向偏移地熔接到两根单模光纤(SMF)上构建而成。由于偏移熔接以及纤芯之间的距离较小,SEHADCF两根纤芯中的不同纤芯模式能够被激发,从而在不同波长范围内形成干涉。干涉光谱的不连续区域可作为标记来识别干涉谷的阶数。对该光纤MZI作为折射率传感器进行了实验研究,在1.335~1.395的折射率范围内获得了353.9 nm/RIU的灵敏度。这种具有高灵敏度的光纤MZI在生物和化学应用中具有巨大潜力。特别是,由于能够通过不连续区域识别干涉谷的阶数,所提出的光纤MZI可以提高光纤传感器在远程监测应用中的可靠性。

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