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首页> 外文期刊>Laser physics letters >Nanostructuring an erbium local environment inside sol-gel silica glasses: toward efficient erbium optical fiber lasers
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Nanostructuring an erbium local environment inside sol-gel silica glasses: toward efficient erbium optical fiber lasers

机译:对溶胶-凝胶二氧化硅玻璃内部的local局部环境进行纳米构造:朝向高效的efficient光纤激光器

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摘要

To extend the use of erbium-(Er-)/aluminum-(Al-) codoped optical fibers in hostile environments, the reduction of the Al amount has been identified as a serious way to harden them against harsh radiation. In this work, sol-gel monolithic Er3+-doped and Er3+/Al3+-codoped silica glasses were prepared from nanoporous silica xerogels soaked in a solution containing an Er salt together or not with an Al salt. After sintering, these glasses were used as the core material of microstructured optical fibers made by the stack-and-draw method. The influence of Al incorporation on the optical properties of Er3+-doped silica glasses and fibers is investigated. This approach enabled the preparation of silica glasses containing dispersed Er3+ ions with low Al content. The obtained fibers have been tested in an all-fibered cavity laser architecture. The Er3+/Al3+-codoped fiber laser presents a maximum efficiency of 27% at 1530 nm. We show that without Al doping, the laser exhibits lower performances that depend on Er content inside the doped fiber core. The effect of Er pair-induced quenching also has been investigated through nonsaturable absorption experiments, which clearly indicate that the fraction of Er ion pairs is significantly reduced in the Al-codoped fiber.
机译:为了在恶劣环境中扩大掺-(Er-)/铝-(Al-)掺杂的光纤的使用,减少铝含量已被认为是使它们抵抗恶劣辐射的一种严肃方法。在这项工作中,溶胶-凝胶整体式掺Er3 +和Er3 + / Al3 +共混的二氧化硅玻璃是由纳米多孔二氧化硅干凝胶浸泡在含Er盐或不含Al盐的溶液中制得的。烧结后,将这些玻璃用作通过层叠拉伸法制得的微结构光纤的芯材。研究了掺Al对掺Er3 +的石英玻璃和纤维光学性能的影响。这种方法能够制备含有低Al含量的分散Er3 +离子的石英玻璃。所获得的光纤已经在全光纤腔激光器架构中进行了测试。掺Er3 + / Al3 +的光纤激光器在1530 nm处的最大效率为27%。我们表明,如果不掺Al,则激光器的性能较低,这取决于掺入的纤芯内部的Er含量。还通过不饱和吸收实验研究了Er对诱导的猝灭作用,这清楚地表明,掺Al的纤维中Er离子对的比例显着降低。

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