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High‐power random distributed feedback fiber laser: From science to application
Authors:Xueyuan Du  Hu Xiao  Pengfei Ma  Xiaolin Wang  Pu Zhou  Zejin Liu
Affiliation:1. College of Optoelectronic Science and Engineering, National University of Defense Technology, Changsha 410073, China;2. Naval Academy of Armament, Beijing 100161, China
Abstract:A fiber laser based on random distributed feedback has attracted increasing attention in recent years, as it has become an important photonic device and has found wide applications in fiber communications or sensing. In this article, recent advances in high‐power random distributed feedback fiber laser are reviewed, including the theoretical analyses, experimental approaches, discussion on the practical applications and outlook. It is found that a random distributed feedback fiber laser can not only act as an information photonics device, but also has the feasibility for high‐efficiency/high‐power generation, which makes it competitive with conventional high‐power laser sources. In addition, high‐power random distributed feedback fiber laser has been successfully applied for midinfrared lasing, frequency doubling to the visible and high‐quality imaging. It is believed that the high‐power random distributed feedback fiber laser could become a promising light source with simple and economic configurations.
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Keywords:random fiber laser  distributed feedback  high power  Rayleigh scattering  stimulated Raman scattering
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