Gorjan Martin, Marincek Marko, Copic Martin
Laboratory for Quantum Optics, Faculty of Mathematics and Physics, University of Ljubljana, Jadranska 19, 1000 Ljubljana, Slovenia.
Opt Express. 2009 Oct 26;17(22):19814-22. doi: 10.1364/OE.17.019814.
We investigate diode pump absorption and temperature distribution in three erbium-doped double-clad fluoride fibers. Absorption is measured via fluorescence intensity and temperature distribution is measured with thermal imaging. Ray-tracing calculations of absorption and heat-equation modeling of temperature distribution are also conducted. We found excellent agreement between measurements and calculations for all fibers. Results indicate that erbium-doped fluoride fiber lasers have already reached maximum output powers allowed under natural convection cooling, with fiber end being the most critical. We propose cooling and fiber design optimizations that may allow an order-of-magnitude further power-scaling.
我们研究了三种掺铒双包层氟化物光纤中的二极管泵浦吸收和温度分布。通过荧光强度测量吸收,并用热成像测量温度分布。还进行了吸收的光线追迹计算和温度分布的热方程建模。我们发现所有光纤的测量结果与计算结果都非常吻合。结果表明,掺铒氟化物光纤激光器已经达到自然对流冷却允许的最大输出功率,光纤端部是最关键的部位。我们提出了冷却和光纤设计优化方案,这可能使功率进一步扩大一个数量级。