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首页> 外文期刊>International Journal of Optics >Investigation on the Effect of Underwater Acoustic Pressure on the Fundamental Mode of Hollow-Core Photonic Bandgap Fibers
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Investigation on the Effect of Underwater Acoustic Pressure on the Fundamental Mode of Hollow-Core Photonic Bandgap Fibers

机译:水下声压对中空光子带隙光纤基本模式的影响研究

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摘要

Recently, microstructured optical fibers have become the subject of extensive research as they can be employed in many civilian and military applications. One of the recent areas of research is to enhance the normalized responsivity (NR) to acoustic pressure of the optical fiber hydrophones by replacing the conventional single mode fibers (SMFs) with hollow-core photonic bandgap fibers (HC-PBFs). However, this needs further investigation. In order to fully understand the feasibility of using HC-PBFs as acoustic pressure sensors and in underwater communication systems, it is important to study their modal properties in this environment. In this paper, the finite element solver (FES) COMSOL Multiphysics is used to study the effect of underwater acoustic pressure on the effective refractive indexneffof the fundamental mode and discuss its contribution to NR. Besides, we investigate, for the first time to our knowledge, the effect of underwater acoustic pressure on the effective areaAeffand the numerical aperture (NA) of the HC-PBF.
机译:近来,微结构化光纤已成为广泛研究的主题,因为它们可用于许多民用和军事应用。最近的研究领域之一是通过用空心光子带隙光纤(HC-PBF)代替传统的单模光纤(SMF)来增强对光纤水听器的声压的归一化响应度(NR)。但是,这需要进一步调查。为了充分了解将HC-PBF用作声压传感器以及在水下通信系统中的可行性,研究这种环境下的模态特性非常重要。本文使用有限元求解器(FES)COMSOL Multiphysics来研究水下声压对基本模态的有效折射率neff的影响,并讨论其对NR的贡献。此外,我们首次了解到水下声压对HC-PBF有效面积Aeff和数值孔径(NA)的影响。

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