Xie Wei, Yang Yifeng, Wang He, Wang Kaiyuan, Duan Xinyu, Liu Kai, Chen Xiaolong, Xiong Xiaoqiang, Zhang Dawei, Meng Junqing
Appl Opt. 2024 Apr 20;63(12):2994-3002. doi: 10.1364/AO.516226.
In this paper, we establish a multi-stage fiber amplifier with pseudo-random binary sequence (PRBS) phase modulation. The stimulated Brillouin gain spectra of the main amplifier with both the unmodulated and pseudo-random binary sequence phase modulated configuration are measured (with corresponding output power), and the stimulated Brillouin scattering (SBS) threshold is investigated experimentally and theoretically. The pseudo-random binary sequence phase modulation parameters are optimized by theoretical simulation. With a two-stage preamplifier chain and a counter-pumping main amplifier stage, a maximum 3.05 kW output power with a slope efficiency of 85.9% is obtained experimentally. The central wavelength of the fiber amplifier is 1050 nm, associated with a full-width at half-maximum linewidth of 13.7 GHz. The stimulated Brillouin scattering reflectivity is below 0.01% at 3.05 kW at 13.7 GHz, which indicates that stimulated Brillouin scattering can be suppressed efficiently at this power and linewidth level.
在本文中,我们建立了一种具有伪随机二进制序列(PRBS)相位调制的多级光纤放大器。测量了未调制和伪随机二进制序列相位调制配置下主放大器的受激布里渊增益谱(以及相应的输出功率),并从实验和理论上研究了受激布里渊散射(SBS)阈值。通过理论模拟优化了伪随机二进制序列相位调制参数。通过两级前置放大器链和反向泵浦主放大器级,实验获得了最大3.05千瓦的输出功率,斜率效率为85.9%。光纤放大器的中心波长为1050纳米,半高全宽线宽为13.7吉赫兹。在13.7吉赫兹频率下,3.05千瓦功率时受激布里渊散射反射率低于0.01%,这表明在该功率和线宽水平下受激布里渊散射可以得到有效抑制。