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Modelling the competition between photo-darkening and photo-bleaching effects in high-power ytterbium-doped fibre amplifiers

机译:模拟高功率掺-光纤放大器中的光暗化与光漂白效应之间的竞争

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摘要

We propose an innovative, fully space-time model to take into account the seed-dependent nature of ageing penalties in high-power ytterbium-doped fibre amplifiers. Ageing is shown to be based on the on-going competition between photo-darkening and photo-bleaching phenomena. Our approach is based on the natural interplay between the excited states of co-existing ytterbium pairs and colour centres in highly doped fibres, in the presence of thermal coupling between the closely spaced excited states. As initiated from IR photons, the excitation of colour centres up to the UV band is supposed to be governed by multi-photon absorption. The interactions of interest in the kinetics of photo-bleaching then take the form of highly efficient charge transfers, which imply the reduction of some fraction of the basically trivalent ions to their divalent state. Due to the activation of ytterbium pairs by means of energy transfer up-conversion, these interactions get more and more effective at elevated operating powers. Computational results using these principles actually help to fit our experimental data regarding seeding effects, as well as fully generic trends already evidenced in the literature. This gives a fine demonstration for the need to discriminate co-active pump and signal contributions. Our self-consistent, still simplified model then consists of a valuable tool to help for a deeper understanding of the ageing issues. Furthermore, considering higher-order ytterbium aggregates, this should open new routes towards more comprehensive models.
机译:我们提出一种创新的,完全时空的模型,以考虑到高功率掺-光纤放大器中衰老罚分的种子相关性质。研究表明老化是基于光变暗和光漂白现象之间持续的竞争。我们的方法基于高密度掺杂纤维中共存的pairs对的激发态与色心之间的自然相互作用,并且在紧密间隔的激发态之间存在热耦合。从红外光子开始,直到紫外波段的色心激发都被多光子吸收控制。然后,在光漂白动力学中感兴趣的相互作用采取高效电荷转移的形式,这意味着将部分基本的三价离子还原成其二价态。由于by对通过能量转移上转换的激活,这些相互作用在提高的工作功率下变得越来越有效。使用这些原理的计算结果实际上有助于拟合我们有关播种效果的实验数据,以及文献中已经证明的完全通用的趋势。这很好地说明了区分互感泵和信号贡献的需求。然后,我们的自洽,仍然简化的模型由一个有价值的工具组成,可以帮助您更深入地了解老化问题。此外,考虑到高阶聚集体,这将为寻求更全面的模型开辟新途径。

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  • 来源
    《Applied physics》 |2017年第8期|227.1-227.11|共11页
  • 作者单位

    ALPhANOV, Inst Opt Aquitaine, Rue Francois Mitterrand, F-33400 Talence, France|CEA, Ctr Etud Sci & Tech Aquitaine, Chemin Sablieres,BP2, F-33114 Le Barp, France;

    ALPhANOV, Inst Opt Aquitaine, Rue Francois Mitterrand, F-33400 Talence, France;

    ALPhANOV, Inst Opt Aquitaine, Rue Francois Mitterrand, F-33400 Talence, France;

    ALPhANOV, Inst Opt Aquitaine, Rue Francois Mitterrand, F-33400 Talence, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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