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Monolithic all-glass device combining pump coupling and end cap scheme for high-power fiber lasers

机译:结合泵浦耦合和端盖方案的单片全玻璃器件,用于高功率光纤激光器

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We report on a novel concept for monolithic pump combining technology to integrate efficiently multi pump fiber channel into a double clad ytterbium doped fiber. The proposed structure consists of a dichromatically coated planar convex lens spliced to an Ytterbium-doped double-clad photonic crystal fiber surrounded by multiple pump fibers. The lens is also used as a protecting end cap where the laser beam expands before exiting the surface. The pump fibers are also attached in this lens circularly surrounding fibers. The lens images these pump fibers end facets into the pump core, where the lens surface is coated by a dichroic mirror (reflective for 980 run, transmissive for >1030 nm). The all-glass structure, assembled by laser splicing, makes the system stable, efficient and suitable for high power operation. We selected 5 channels as testing channels among 14 pump channels (200 um, NA=0.12) in order to confirm reliability of the system. The coupled pump power efficiency into the 500 μm core with NA=0.5 was over 80% and typical slope efficiency of the laser output is over 70%. Theoretical analysis was discussed in order to get optimized parameters and scaling this type of coupler to higher average powers is considered. With the monolithic pump combining technologies, we confirmed that the proposed device has a potential application not only in kW range high power fiber lasers but also compact photonic devices.
机译:我们报告了一种新颖的单泵组合技术概念,该技术可将多泵光纤通道有效地集成到双包层掺do光纤中。所提出的结构由双色涂层的平面凸透镜组成,该透镜接合到掺有多个泵浦光纤的掺-双包层光子晶体光纤上。透镜还用作保护端盖,激光束在离开表面之前会在此处扩展。泵浦光纤也以圆形围绕的光纤连接在该透镜中。透镜将这些泵浦光纤端面刻入泵浦纤芯,在透镜芯中,透镜表面涂有二向色镜(对于980阶反射,对> 1030 nm透射)。全玻璃结构,通过激光拼接组装而成,使系统稳定,高效,适合大功率运行。为了确认系统的可靠性,我们从14个泵通道(200 um,NA = 0.12)中选择了5个通道作为测试通道。在NA = 0.5的情况下,耦合到500μm纤芯的泵浦功率效率超过80%,激光输出的典型斜率效率超过70%。讨论了理论分析以便获得优化的参数,并考虑将这种类型的耦合器缩放到更高的平均功率。通过单片泵浦组合技术,我们证实了该器件不仅在kW范围的高功率光纤激光器中而且在紧凑型光子器件中都有潜在的应用。

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