首页> 外文会议>Optical Components and Materials IV; Proceedings of SPIE-The International Society for Optical Engineering; vol.6469 >Codoped materials for high power fiber lasers - diffusion behaviour and optical properties
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Codoped materials for high power fiber lasers - diffusion behaviour and optical properties

机译:高功率光纤激光器的共掺杂材料-扩散行为和光学特性

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Optical fibers for high power lasers and amplifiers are fabricated on the basis of quartz glass which has outstanding properties concerning high fiber strength, high power hardness and low optical losses compared with other glasses such as heavy metal fluoride or oxide glasses. It is well known, however, that the host properties of pure silica regarding the active rare earth ions are insufficient and the laser medium has to be improved by the incorporation of codopants. Here we present new investigations of material and fiber properties for phosphorus/aluminium codoping, with regard to the realization of efficient rare earth doped cw and pulsed high power fiber devices. The diffusion behaviour in the complex systems shows characteristic interaction effects, which influence the dopant concentration and their spatial distribution. The refractive index in the codoped systems and the basic attenuation deviate remarkably from additivity relations. The absorption spectrum in the VIS/NIR region depends on codopant concentration and on preparation conditions, with influence on the fluorescence properties of the rare earths and the laser efficiency.
机译:用于高功率激光器和放大器的光纤是在石英玻璃的基础上制造的,与其他玻璃(如重金属氟化物或氧化物玻璃)相比,石英玻璃具有出色的特性,包括高光纤强度,高功率硬度和低光学损耗。然而,众所周知的是,纯二氧化硅相对于活性稀土离子的主体性能不足,并且必须通过掺入共掺杂剂来改善激光介质。在这里,我们提出了有关磷/铝共掺杂材料和纤维特性的新研究,以实现高效稀土掺杂的连续波和脉冲高功率光纤器件的实现。复杂系统中的扩散行为表现出特征性的相互作用效应,该效应影响掺杂剂浓度及其空间分布。共掺杂体系中的折射率和基本衰减显着偏离加性关系。 VIS / NIR区域的吸收光谱取决于共混物的浓度和制备条件,并影响稀土的荧光性质和激光效率。

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