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Numerical comparison of pumping methods for high-power Er/Yb-codoped fiber lasers

机译:高功率ER / YB编号光纤泵送方法的数值比较

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摘要

The amplified spontaneous emission (ASE) in the Yb band and thermal damage are the main obstacles to the power scaling of high-power Er/Yb-codoped fiber lasers (EYDFLs) and amplifiers. In this paper, three popular pumping methods, i.e., off-peak pumping, core pumping with ytterbium-doped fiber laser, and cascade co-pumping, the conquering of these obstacles is investigated and compared based on numerical simulation. The influence of the pump wavelength is systematically analyzed. Performances, including thermal effects, optimal fiber length, and maximum applicable pump power and expectable output power are compared for EYDFLs with these pumping methods. The results show that off-peak pumping and core pumping can alleviate the Yb ASE problem and increase the achievable output power to some extent. We believe this improvement fundamentally originated from the lower absorption coefficient that alleviates the bottlenecking effect. The Yb ASE problem is still inevitable for these two methods, whereas the cascade co-pumping method can completely extricate a EYDFL from the restrict of this problem and push the power to the thermal damaged limitation. (C) 2021 Optical Society of America
机译:Yb波段的放大自发辐射(ASE)和热损伤是高功率Er/Yb共掺光纤激光器(EYDFLs)和放大器功率放大的主要障碍。本文研究了三种常用的泵浦方法,即非峰值泵浦、掺镱光纤激光器抽芯和级联共泵浦,并在数值模拟的基础上对它们的克服进行了比较。系统地分析了泵浦波长的影响。比较了采用这些泵浦方法的EYDFLs的性能,包括热效应、最佳光纤长度、最大适用泵浦功率和预期输出功率。结果表明,非峰值泵浦和抽芯可以缓解Yb-ASE问题,并在一定程度上提高可实现的输出功率。我们认为,这种改善从根本上源于较低的吸收系数,从而缓解瓶颈效应。对于这两种方法来说,Yb-ASE问题仍然是不可避免的,而级联共泵浦方法可以完全将EYDFL从这个问题的限制中解脱出来,并将功率推到热损伤极限。(2021)美国光学学会

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  • 来源
    《Applied optics》 |2021年第9期|共7页
  • 作者单位

    Tianjin Univ Sch Precis Instrument &

    Optoelect Engn Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Precis Instrument &

    Optoelect Engn Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Precis Instrument &

    Optoelect Engn Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Precis Instrument &

    Optoelect Engn Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Precis Instrument &

    Optoelect Engn Tianjin 300072 Peoples R China;

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