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Investigation of temperature influence on output performance of high-power cladding-pumped Er,Yb co-doped fiber laser

机译:温度对大功率包层掺Er钇Y共掺光纤激光器输出性能的影响

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摘要

Effect of the fiber's temperature on lasing performance is investigated in high-power, cladding-pumped Er, Yb co-doped fiber laser system. A three-layer symmetric cylindrical model is applied to describe the temperature distribution of the fiber under natural air convection. Radial temperature distribution of the fiber is calculated with consideration of the quantum defect heat, the heat from the absorption of spontaneous emission, and the convection and radiation at the heat transfer boundaries. The steady-state theoretical model based on rate equations takes into account of the energy transfers between Er~(3+)-ions and Yb~(3+)-ions and a fraction of nonparticipatory Yb~(3+)-ions. Shooting method and Newton iteration method are used to solve the boundary-value problems under different environmental temperatures, pump powers and reflectivities at the fiber ends. Numerical simulations are consistent with experimental results and show that increasing the fiber's temperature is an effective strategy to suppress the 1 μm parasitic lasing and improve the lasing performance at 1.5 um, a similar phenomenon is found with enhancing doping concentrations of the two ions and decreasing the reflectivities at the fiber ends. Our numerical results present a theoretical guideline for further improving the laser performance in terms of output power of ~1.5 μm in high-power Er,Yb-doped fiber laser systems.
机译:在高功率,包层泵浦Er,Y掺钴光纤激光器系统中,研究了光纤温度对激光性能的影响。应用三层对称圆柱模型描述自然空气对流条件下纤维的温度分布。纤维的径向温度分布是在考虑了量子缺陷热量,吸收自发辐射所产生的热量以及传热边界处的对流和辐射的基础上计算出来的。基于速率方程的稳态理论模型考虑了Er〜(3+)离子与Yb〜(3+)离子之间的能量转移以及一部分非参与型Yb〜(3+)离子。射击法和牛顿迭代法用于解决在不同环境温度,泵浦功率和光纤末端反射率下的边值问题。数值模拟与实验结果吻合,表明提高光纤温度是抑制1μm寄生激光并提高1.5 um激光性能的有效策略,在增加两个离子的掺杂浓度并降低两个离子时发现了类似的现象。光纤末端的反射率。我们的数值结果为进一步提高高功率掺,掺Y光纤激光器系统的输出功率〜1.5μm提供了理论指导。

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  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Key laboratory of Micro and Nano Photonic Structures (Ministry of Education), Department of Optical Science and Engineering, Fudan University, Shanghai 200433, China;

    Key laboratory of Micro and Nano Photonic Structures (Ministry of Education), Department of Optical Science and Engineering, Fudan University, Shanghai 200433, China;

    Key laboratory of Micro and Nano Photonic Structures (Ministry of Education), Department of Optical Science and Engineering, Fudan University, Shanghai 200433, China;

    Key laboratory of Micro and Nano Photonic Structures (Ministry of Education), Department of Optical Science and Engineering, Fudan University, Shanghai 200433, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cladding-pumped; Er; Yb co-doped fiber laser; thermal effects; modeling;

    机译:熔覆泵浦; Yb共掺杂光纤激光器;热效应;造型;

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