Author Affiliations
Abstract
College of Advanced Disciplinary Studies, National University of Defense Technology, Changsha 410073, China
Stimulated Raman scattering (SRS) effect is considered to be one of the main obstacles for power scaling in general-type fiber lasers. Different from previous techniques that aim at suppressing SRS, nonlinear fiber amplifier (NFA), which manipulates and employs the SRS for power scaling in rare-earth-doped fiber, is under intensive research in recent years. In this paper, the authors will present an all-round study on this new kind of high-power fiber amplifier. A theoretical model is proposed based on the rate equation and amplified spontaneous emission (ASE), with random noise taken into account. By numerical solving of the theoretical model, the power scaling potential, heat analysis and advantages in suppressing the undesired backscattering light are quantificationally analyzed for the first time. Then two different types of high-power NFAs are demonstrated individually. Firstly, a laser diode pumped NFA has reached kilowatt output power, and the results agree well with theoretical predictions. Secondly, a tandem-pumped NFA is proposed for the first time and validated experimentally, in which 1.5 kW output power has been achieved. The authors also briefly discuss several new issues relating to the complex nonlinear dynamics that occur in high-power NFAs, which might be interesting topics for future endeavors.
high-power fiber laser nonlinear fiber amplifier stimulated Raman scattering 
High Power Laser Science and Engineering
2018, 6(3): 03000e51
作者单位
摘要
天津大学精密仪器与光电子工程学院, 光电信息技术教育部重点实验室, 天津 300072
报道了利用简化的频率分辨光学开关法快速测量飞秒激光脉冲,并形成反馈,控制液晶空间光调制器,补偿非线性光纤飞秒激光放大器输出脉冲的啁啾,获得了脉冲宽度74 fs的变换极限脉冲。
激光光学 简化的频率分辨光学开关 啁啾补偿 液晶空间光调制器 非线性光纤放大器 飞秒激光 
中国激光
2012, 39(11): 1102003

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