通过在周期性梳状折射率结构的最外层增加一个高折射率平台的方法,对梳状折射率分布大模场光纤的波导结构进行了优化,使其在模场面积、模场分布及抗弯曲性能方面都有明显提升。模拟研究结果表明,与已有单一梳状折射率分布的光纤相比,优...通过在周期性梳状折射率结构的最外层增加一个高折射率平台的方法,对梳状折射率分布大模场光纤的波导结构进行了优化,使其在模场面积、模场分布及抗弯曲性能方面都有明显提升。模拟研究结果表明,与已有单一梳状折射率分布的光纤相比,优化后的大模场光纤的模场面积提高了700μm^2以上,且在相同弯曲半径下,基模弯曲损耗由6 dB/m降低为0.1 d B/m。此外,通过对最外层高折射率平台的参数进行调制可实现不同的模场分布,包括高斯分布、平坦化分布和环状分布,满足特殊激光加工工业的应用需求。展开更多
A high power all-fiber laser is experimentally studied.A monolithic fiber laser system with only one stage of resonator cavity is constructed and 404-W continuous wave(CW) output power is obtained.Its opticalto -opt...A high power all-fiber laser is experimentally studied.A monolithic fiber laser system with only one stage of resonator cavity is constructed and 404-W continuous wave(CW) output power is obtained.Its opticalto -optical conversion efficiency is up to 64%.The laser central wavelength is at 1081 nm with the spectral full-width at half-maximum(FWHM) of 2 nm.The laser setup can work with excellent stability;in the long time of high power operation,no thermal distortions or damages are observed.展开更多
文摘通过在周期性梳状折射率结构的最外层增加一个高折射率平台的方法,对梳状折射率分布大模场光纤的波导结构进行了优化,使其在模场面积、模场分布及抗弯曲性能方面都有明显提升。模拟研究结果表明,与已有单一梳状折射率分布的光纤相比,优化后的大模场光纤的模场面积提高了700μm^2以上,且在相同弯曲半径下,基模弯曲损耗由6 dB/m降低为0.1 d B/m。此外,通过对最外层高折射率平台的参数进行调制可实现不同的模场分布,包括高斯分布、平坦化分布和环状分布,满足特殊激光加工工业的应用需求。
基金supported by the Chinese Academy of Sciences(No.2006LH02) the National Key Natural Science Foundation of China(No.60537060)
文摘A high power all-fiber laser is experimentally studied.A monolithic fiber laser system with only one stage of resonator cavity is constructed and 404-W continuous wave(CW) output power is obtained.Its opticalto -optical conversion efficiency is up to 64%.The laser central wavelength is at 1081 nm with the spectral full-width at half-maximum(FWHM) of 2 nm.The laser setup can work with excellent stability;in the long time of high power operation,no thermal distortions or damages are observed.