Woodward R I, Majewski M R, Bharathan G, Hudson D D, Fuerbach A, Jackson S D
Opt Lett. 2018 Apr 1;43(7):1471-1474. doi: 10.1364/OL.43.001471.
Rare-earth-doped fiber lasers are emerging as promising high-power mid-infrared sources for the 2.6-3.0 μm and 3.3-3.8 μm regions based on erbium and holmium ions. The intermediate wavelength range, however, remains vastly underserved, despite prospects for important manufacturing and defense applications. Here, we demonstrate the potential of dysprosium-doped fiber to solve this problem, with a simple in-band pumped grating-stabilized linear cavity generating up to 1.06 W at 3.15 μm. A slope efficiency of 73% with respect to launched power (77% relative to absorbed power) is achieved-the highest value for any mid-infrared fiber laser to date, to the best of our knowledge. Opportunities for further power and efficiency scaling are also discussed.
基于铒离子和钬离子,掺稀土光纤激光器正成为2.6 - 3.0微米和3.3 - 3.8微米波段颇具前景的高功率中红外光源。然而,尽管在重要的制造和国防应用方面有前景,但中间波长范围仍远未得到充分利用。在此,我们展示了掺镝光纤解决这一问题的潜力,通过一个简单的带内泵浦光栅稳定线性腔,在3.15微米波长处产生高达1.06瓦的功率。据我们所知,相对于注入功率的斜率效率达到73%(相对于吸收功率为77%),这是迄今为止任何中红外光纤激光器的最高值。我们还讨论了进一步提高功率和效率的机会。