Wang P, Cooper L J, Sahu J K, Clarkson W A
Optoelectronics Research Center, University of Southampton, Highfield, UK.
Opt Lett. 2006 Jan 15;31(2):226-8. doi: 10.1364/ol.31.000226.
A novel approach to achieving robust single-spatial-mode operation of cladding-pumped fiber lasers with multimode cores is reported. The approach is based on the use of a fiber geometry in which the core has a helical trajectory within the inner cladding to suppress laser oscillation on higher-order modes. In a preliminary proof-of-principle study, efficient single-mode operation of a cladding-pumped ytterbium-doped helical-core fiber laser with a 30 microm diameter core and a numerical aperture of 0.087 has been demonstrated. The laser yielded 60.4 W of output at 1043 nm in a beam with M2 < 1.4 for 92.6 W launched pump power from a diode stack at 976 nm. The slope efficiency at pump powers well above threshold was approximately 84%, which compares favorably with the slope efficiencies achievable with conventional straight-core Yb-doped double-clad fiber lasers.
报道了一种实现具有多模纤芯的包层泵浦光纤激光器稳健单空间模式运转的新方法。该方法基于一种光纤结构,其中纤芯在内包层内具有螺旋轨迹,以抑制高阶模式上的激光振荡。在一项初步的原理验证研究中,已证明了一种包层泵浦的掺镱螺旋芯光纤激光器的高效单模运转,该激光器纤芯直径为30微米,数值孔径为0.087。对于来自976纳米二极管叠层的92.6瓦泵浦功率,该激光器在1043纳米处产生了60.4瓦的输出,光束的M²<1.4。在远高于阈值的泵浦功率下,斜率效率约为84%,与传统直芯掺镱双包层光纤激光器可实现的斜率效率相比具有优势。