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Published in: Optical and Quantum Electronics 5/2024

01-05-2024

The coupling study between multi-channel laser diodes and multimode fiber in a fiber pump laser

Authors: Zhu Ma, Xiaoyan Sun, Yixiong Yan, Shunshun Zhong, Lian Duan, Fan Zhang, Ji’an Duan

Published in: Optical and Quantum Electronics | Issue 5/2024

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Abstract

Fiber pump lasers are widely used in a variety of fields, such as optical fiber communication, national defense, and medical beauty due to their high beam quality and intense laser energy. However, the alignment errors of optical parameters can influence the beam quality in the packaging of the fiber pump lasers. It is necessary to analyze the reflector, focusing lens, fiber, and the laser diode on the coupling influence between for guiding the fiber pump laser packaging. Firstly, we establish the optical path between the laser diode, focusing lens and reflector based on the physical ray-tracing method. On the other hand, the high coupling efficiency of whole system is achieved by optimize the parameters of each optical element. The simulation result shows that the highest coupling efficiency is 98.6% based on optimizing the parameters of the optical path while the experimental result of coupling efficiency is 90.36%. Also, the effects of refractive index, wavelength and fiber diameter on coupling efficiency are further investigated. The experimental results show that the radial displacement has the greatest influence on the coupling efficiency. The simulation results show that increasing the fiber core diameter can effectively improve the coupling efficiency. The results of rigorous analysis will provide an effective reference for manufacturing compact, high coupling efficiency fiber pumped laser.

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Metadata
Title
The coupling study between multi-channel laser diodes and multimode fiber in a fiber pump laser
Authors
Zhu Ma
Xiaoyan Sun
Yixiong Yan
Shunshun Zhong
Lian Duan
Fan Zhang
Ji’an Duan
Publication date
01-05-2024
Publisher
Springer US
Published in
Optical and Quantum Electronics / Issue 5/2024
Print ISSN: 0306-8919
Electronic ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-023-05956-6

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