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High power 405 nm diode laser fiber-coupled single-mode system\ud with high long-term stability

机译:大功率405 nm二极管激光光纤耦合单模系统\ ud 长期稳定性高

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摘要

Fiber-coupled 405 nm diode laser systems are rarely used with fiber output powers higher than 50 mW. A quick degradation of fiber-coupled high power modules with wavelengths in the lower range of the visible spectrum is known for several years. Meanwhile, the typical power of single-mode diode lasers around 400 nm is in the order of 100 to 300 mW, leading to single-mode fiber core power densities in the 1 MW/cm² range. This is three magnitudes of order below the known threshold for optical damage. Our profound investigations on the influence of 405 nm laser light irradiation of single-mode fibers found the growth of periodic surface structures in the form of ripples responsible for the power loss. The ripples are found on the proximal and distal fiber end surfaces, negatively impacting power transmission and beam quality, respectively. Important parameters in the generation of the surface structures are power density, surface roughness and polarization direction. A fiber-coupled high-power 405 nm diode laser system with a high long-term stability will be introduced and described.
机译:光纤耦合405 nm二极管激光器系统很少使用光纤输出功率高于50 mW的系统。几年来已知波长短于可见光谱范围的光纤耦合高功率模块的快速降解。同时,大约400 nm的单模二极管激光器的典型功率约为100至300 mW,从而导致单模光纤纤芯功率密度在1 MW /cm²的范围内。这比光学损伤的已知阈值低三个数量级。我们对405 nm激光对单模光纤的影响进行了深入研究,发现周期性表面结构的增长以引起功率损耗的波纹形式出现。波纹在光纤的近端和远端表面上发现,分别对功率传输和光束质量产生负面影响。表面结构产生中的重要参数是功率密度,表面粗糙度和极化方向。将介绍和描述具有高长期稳定性的光纤耦合大功率405 nm二极管激光器系统。

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