Mitigation of TMI in an 8 kW tandem pumped fiber amplifier enabled by inter-mode gain competition mechanism through bending control

Author:

Li Ruixian1,Li Haobo1,Wu Hanshuo12ORCID,Xiao Hu12,Leng Jinyong12,Huang Liangjin12ORCID,Pan Zhiyong12,Zhou Pu1

Affiliation:

1. National University of Defense Technology

2. Hunan Provincial Key Laboratory of High Energy Laser Technology

Abstract

In this work, the impact of fiber bending and mode content on transverse mode instability (TMI) is investigated. Based on a modified stimulated thermal Rayleigh scattering (STRS) model considering the gain competition between transverse modes, we theoretically detailed the TMI threshold under various mode content and bending conditions in few-mode fibers. Our theoretical calculations demonstrate that larger bending diameters increase the high order mode (HOM) components in the amplifier, which in turn reduces the frequency-shifted Stokes LP11o mode due to the inter-mode gain competition mechanism, thus improving the TMI threshold of few-mode amplifiers. The experimental results agree with the simulation. Finally, by optimizing the bending, an 8.38 kW output tandem pumped fiber amplifier is obtained with a beam quality M2 of 1.8. Both TMI and stimulated Raman scattering (SRS) are well suppressed at the maximum power. This work provides a comprehensive analysis of the TMI in few-mode amplifiers and offers a practical method to realize high-power high-brightness fiber lasers.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Hunan Provincial Innovation Construct Project

Innovative Research Groups of Hunan Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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