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Fundamental limitations of the McCumber relation applied to Er-doped silica and other amorphous-host lasers

机译:McCumber关系的基本限制适用于掺Er的二氧化硅和其他非晶态主体激光器

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摘要

The approximate McCumber procedure is often used to predict the emission cross-section spectrum of the 1.5-/spl mu/m transition of Er-doped glass fibers from the transition's measured absorption spectrum. By applying this procedure to a large number of published Er-doped fiber absorption spectra, we demonstrate that its accuracy is actually statistically quite low: it tends to overestimate the peak cross-section (by up to 75%) and predicts an emission spectrum that is erroneously depressed in the S band (below /spl sim/1530 nm) and inflated in the C and L bands. Error levels are substantial and yield unacceptably large errors when modeling Er-doped fiber devices. We provide analytic evidence that this failure is rooted in part in the approximations inherent to the procedure, and in part in a fundamental limitation of the underlying McCumber relation. Specifically, when applied to broad optical transitions, the McCumber relation yields poor predictions of the emission cross-section spectral shape, the error worsening in the L and S bands, with increasing homogeneous broadening, and with increasing bandwidth. The McCumber relation should be avoided for broad laser transitions, which includes most rare-earth transitions in many amorphous hosts.
机译:通常使用近似的McCumber程序从跃迁的测量吸收光谱中预测掺Er玻璃纤维的1.5- / spl mu / m跃迁的发射截面光谱。通过将此程序应用于大量已发布的掺Er光纤吸收光谱,我们证明了其准确性实际上在统计学上很低:它倾向于高估峰的横截面(最多75%)并预测发射光谱,在S波段(低于/ spl sim / 1530 nm)被错误地压低,而在C和L波段被夸大。在对掺Er光纤器件进行建模时,误差水平很大,并且会产生不可接受的大误差。我们提供的分析证据表明,这种失败部分源于该程序固有的近似值,部分原因是潜在的McCumber关系的基本局限性。具体而言,当应用于宽光学跃迁时,McCumber关系对发射横截面光谱形状的预测较差,L和S波段的误差恶化,均质展宽增加,带宽增加。对于宽泛的激光跃迁,应避免使用McCumber关系,其中包括许多非晶态主体中的最稀土跃迁。

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