半导体直接泵浦3 kW超宽温运行光纤激光器

LD-directly-pumped 3 kW fiber laser operating in an ultra-wide temperature range

  • 摘要: 高功率宽温运行光纤激光器因环境适应性优异,在诸多特种作业领域具有广泛应用前景。本课题组近期成功研制出输出功率达3 kW的超宽温运行光纤激光器。该激光器采用半导体直接泵浦振荡放大一体化光路结构,并在−50 ℃至+50 ℃的超宽温度范围内完成了系统测试。测试结果表明:在全温域范围内,激光器均可实现不低于3kW的稳定输出;最高输出功率出现在−30 ℃附近,达到约3.6 kW;全温域光-光转换效率均高于65%,峰值约73%;光束质量M2为1.35。这是首次采用振荡放大一体化结构在超宽温范围内实现3 kW级功率输出的光纤激光器,为复杂环境下全地域、全天候作业提供了关键技术支撑。后续工作将聚焦于进一步提升输出功率、转换效率与系统稳定性,并推动其实际应用落地。

     

    Abstract:
    Background High-power, wide-temperature-range fiber lasers offer exceptional environmental adaptability, making them highly promising for a wide range of specialized applications. Over the past few years, our research group has successively developed 1 kW and 2 kW fiber lasers capable of stable operation over a wide temperature range from −50 ℃ to 50 ℃.
    Purpose To achieve fiber lasers capable of wide-temperature-range operation with higher power and higher conversion efficiency, our research group carried out the work shown in this paper.
    Methods In this work, the optical architecture of the fiber laser was optimized by adopting the oscillator-amplifier-integrated configuration to enhance conversion efficiency. Meanwhile, the length and coiling parameters of the gain fiber were carefully designed to achieve single-mode output.
    Results The experimental results show that stable laser output of no less than 3 kW is maintained throughout the entire temperature range; the maximum output power reaches approximately 3.6 kW near –30 ℃. The optical-to-optical conversion efficiency remains above 65% across the full temperature range, with a peak value of about 73%. The beam quality M2 is measured to be 1.35.
    Conclusion This marks the first demonstration of a 3 kW-class fiber laser employing an oscillator-amplifier-integrated structure operating over such a wide temperature range, providing key technical support for all-terrain, all-weather operations in complex environments. Future work will focus on further improving output power, conversion efficiency, and system stability, as well as promoting its practical application.

     

/

返回文章
返回