Polarization control parameters evolution of genetic algorithm‐based 2 µm Tm‐doped fiber laser

Author:

Liu Guangmiao12ORCID,Wang Yibo1,Xian Anhua1,Wu Kun1,Yin Xuejian1,Yao Tianchen12,Zhu Qiang12,Kang Hui12,Zheng Fangfang1,Qi Liwen1,Zhou Wei12,Wang Haotian1,Wang Fei2,Shen Deyuan12

Affiliation:

1. Jiangsu Key Laboratory of Advanced Laser Materials and Devices, School of Physics and Electronic Engineering Jiangsu Normal University Xuzhou China

2. Jiangsu Institute of Mid Infrared Laser Technology & Applications Xuzhou China

Abstract

AbstractIn this paper, we explored the different performances of the evolution of polarization control parameters under algorithm optimization in one‐dimensional, two‐dimensional, and three‐dimensional parameter space. We found that the genetic algorithm (GA) operation has a typical converging trend as the epoch increasing of groups in ultra‐fast pulse generation. The corresponding deviations were calculated to be 10.8%, 11.2%, and 5.0%, respectively, which is different from the traversal algorithm operation. The typical noise‐like pulse state was effectively automatically searched at different length cavities, with center wavelengths of 1973, 1988.7, and 2002.7 nm, repetition rate of 9.4, 10.4, and 5.4 MHz, and typical spike duration of ~224 fs. Our research shows the effectiveness of the GA in searching and controlling the ultrashort pulse output of a 2‐µm thulium‐doped fiber laser.

Publisher

Wiley

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