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Estimation and Management of Performance Limiting Factors in the Development of 1 kW Peak Power Pulsed Fiber MOPA at 1550 nm

机译:在1550nm下估算和管理1 kW峰值电源脉冲纤维MOPA开发中的绩效限制因素

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摘要

An all-fiber three-stage master oscillator power amplifier (MOPA), based on Erbium and Erbium-Ytterbium co-doped fibers, has been designed and developed. The performance of such a laser is primarily limited by amplified spontaneous emission (ASE), Yb bottlenecking, and non-linear effects. Other important factors, that need to be considered towards performance improvement, are fiber bend diameter and heat generated in the fiber. This paper describes the methodology for the estimation and management of these limiting factors for each amplifier stage. The work presented here is limited to the fibers which are commercially easily available, unlike customised Yb-free large mode area (LMA) Erbium-doped fibers, where very high peak and average powers are being reported due to the absence of Yb ASE. Presented experimental results and discussion shall be beneficial for the fiber laser amplifier designers. With suitable management, 1 kW peak power pulses of 30 ns duration at 200 kHz repetition rate have been achieved with 30 % optical efficiency. The collimated output of 6 W average power (limited by Yb ASE) with high beam quality (M-2 approximate to 1.6) at 1550 nm can be employed for a variety of applications. By adding additional amplifier stages, power can be scaled further.
机译:基于Erbium和Erterbium-Ytterbium共掺杂纤​​维的全纤维三级主振荡器功率放大器(MOPA)已经设计和开发。这种激光的性能主要受到扩增的自发发射(ASE),YB瓶颈和非线性效应的限制。需要考虑性能改善的其他重要因素是纤维弯曲直径和纤维中产生的热量。本文介绍了对每个放大器阶段的这些限制因素的估计和管理的方法。这里呈现的工作仅限于可商购的纤维,与定制的Yb的大型模式(LMA)掺杂纤维不同,在没有YB ASE的情况下,正在报告非常高的峰值和平均功率。提出的实验结果和讨论对光纤激光放大器设计人员有益。通过合适的管理,已经实现了1千瓦峰值功率脉冲,以30%的光学效率实现了200kHz重复率。可以采用在1550nm处具有高光束质量(M-2近似为1.6)的6V平均功率(由YB ASE限制)的准直输出。通过添加额外放大器级,可以进一步缩放电源。

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