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大模场面积沟槽辅助双模多芯光纤的设计与分析

Design and analysis of trench-assisted dual-mode multi-core fiber with large-mode-field-area.

作者信息

Zhang Yuqin, Lian Yudong, Wang Yuhe, Yang Mengxin, Wang Jingbo, Luan Nannan, Wang Yulei, Lu Zhiwei

出版信息

Appl Opt. 2021 Jun 1;60(16):4698-4705. doi: 10.1364/AO.421030.

Abstract

A novel trench-assisted dual-mode multi-core fiber with large-mode-field-area is proposed. The structure consists of 17 conventional cores and two air holes according to a regular hexagon, which can realize strict dual-mode transmission. The structural parameters' effect on mode transmission characteristics, mode-field-area, and bending loss are analyzed systematically. By optimizing the structural parameters, the mode-field-area of the fundamental mode can reach ${2100.619};{{\unicode{x00B5}{\rm m}}^2}$. The introduction of the trench with a lower refractive index than cladding can reduce the bending loss to ${9.88} \times {{10}^{- 4}};{\rm dB}/{\rm m}$ when the bending radius is 2.3 cm. Besides, the structural design is flexible, and the manufacturing process is simple, which has broad application prospects.

摘要

提出了一种新型的具有大模场面积的沟槽辅助双模多芯光纤。该结构由17个常规芯和两个空气孔按照正六边形排列组成,可实现严格的双模传输。系统分析了结构参数对模式传输特性、模场面积和弯曲损耗的影响。通过优化结构参数,基模的模场面积可达2100.619μm²。引入折射率低于包层的沟槽,当弯曲半径为2.3 cm时,可将弯曲损耗降低至9.88×10⁻⁴dB/m。此外,该结构设计灵活,制造工艺简单,具有广阔的应用前景。

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