Habib Md Selim, Antonio-Lopez J E, Markos Christos, Schülzgen Axel, Amezcua-Correa Rodrigo
Opt Express. 2019 Feb 18;27(4):3824-3836. doi: 10.1364/OE.27.003824.
In this paper, we numerically investigate various hollow-core anti-resonant (HC-AR) fibers towards low propagation and bend loss with effectively single-mode operation in the telecommunications window. We demonstrate how the propagation loss and higher-order mode modal contents are strongly influenced by the geometrical structure and the number of the anti-resonant cladding tubes. We found that 5-tube nested HC-AR fiber has a wider anti-resonant band, lower loss, and larger higher-order mode extinction ratio than designs with 6 or more anti-resonant tubes. A loss ratio between the higher-order modes and fundamental mode, as high as 12,000, is obtained in a 5-tube nested HC-AR fiber. To the best of our knowledge, this is the largest higher-order mode extinction ratio demonstrated in a hollow-core fiber at 1.55 μm. In addition, we propose a modified 5-tube nested HC-AR fiber, with propagation loss below 1 dB/km from 1330 to 1660 nm. This fiber also has a small bend loss of ~15 dB/km for a bend radius of 1 cm.
在本文中,我们对各种空心反谐振(HC-AR)光纤进行了数值研究,旨在实现电信窗口中低传输损耗和弯曲损耗以及有效的单模工作。我们展示了传输损耗和高阶模模态含量如何受到几何结构和反谐振包层管数量的强烈影响。我们发现,与具有6个或更多反谐振管的设计相比,5管嵌套式HC-AR光纤具有更宽的反谐振带宽、更低的损耗以及更大 的高阶模消光比。在5管嵌套式HC-AR光纤中,高阶模与基模之间的损耗比高达12000。据我们所知,这是在1.55μm空心光纤中展示出的最大高阶模消光比。此外,我们提出了一种改进的5管嵌套式HC-AR光纤,其在1330至1660nm范围内的传输损耗低于1dB/km。对于1cm的弯曲半径,这种光纤还具有约15dB/km的小弯曲损耗。