Highly birefringent anti-resonant hollow-core fiber with meniscoid nested structure

Author:

Wang Yang,Zhang XiaobeiORCID,Chen Wei,Zhang Qi,Yang Yong,Li Maochun1,Yan Miao1,Wang Tingyun

Affiliation:

1. China State Shipbuilding Corporation

Abstract

We propose a meniscoid nested anti-resonant hollow-core fiber (MAF), wherein the fourfold rotational symmetry structure enables high birefringence and low loss in dual-wavelength range. Numerical investigation and simulation for variations in wall thickness along orthogonal directions are conducted, through which a formulated optimization criterion revealing the relationship between minimum difference in wall thickness and birefringence of 10−5 is obtained. A parameter of beat length to loss ratio η is defined to evaluate MAF performance with respect to birefringence and confinement loss (CL). With optimized MAF structure, the birefringence and CL are improved to 3.62 × 10−5 and 8.5 dB/km at 1.06 µm, 9.83 × 10−5 and 204.1 dB/km at 1.55 µm, respectively. Meanwhile, the bandwidths extend to 172 nm at 1.06 µm and 216 nm at 1.55 µm, and the superior bending resistance characteristics are validated. Our work offers valuable guidance for designing and optimizing highly birefringent anti-resonant hollow-core fiber (ARF), and the proposed MAF has great potential in polarization-dependent transmission and interferometric fiber gyroscopes.

Funder

National Natural Science Foundation of China

Open Fund of Laboratory of Science and Technology on Marine Navigation and Control, China State Shipbuilding Corporation

Jiangsu Province's Industry Outlook and Key Core Technologies-Key Projects

111 Project

Advanced Optical Waveguide Intelligent Manufacturing and Testing Professional Technical Service Platform of Shanghai

Science and Technology Commission of Shanghai Municipality

Publisher

Optica Publishing Group

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