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首页> 外文期刊>Journal of Lightwave Technology >Theoretical and experimental investigation of a resonantly pumped thulium doped fluorozirconate fiber amplifier at around 810 nm
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Theoretical and experimental investigation of a resonantly pumped thulium doped fluorozirconate fiber amplifier at around 810 nm

机译:在810 nm左右共振泵浦掺fiber的氟锆酸光纤放大器的理论和实验研究

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摘要

The potential of thulium-doped fluorozirconate fibers to provide an efficient AlGaAs diode pumped traveling wave amplifier at wavelengths around 810 nm is investigated. The authors present calculations and experimental measurements of the small signal gain when excitation is resonant with the upper laser level, with a view to predicting the upper limits of performance for optimized fiber design. The theoretical treatment involves numerical determination of the evolution of pump and signal power (and hence gain) along the length of the fiber as a function of wavelength, spectral lineshapes and lifetimes, and geometrical factors. Amplification over the range 800-830 nm has been achieved in multimoded fiber with a best observed gain of 22 dB at 806 nm.
机译:研究了掺th的氟锆酸盐纤维在810 nm附近提供有效的AlGaAs二极管泵浦行波放大器的潜力。作者介绍了当激发与较高的激光水平共振时小信号增益的计算和实验测量结果,以预测优化光纤设计的性能上限。理论处理涉及数值确定泵浦和沿着光纤长度的信号功率(以及增益)随波长,光谱线形和寿命以及几何因素的变化。在多模光纤中已经实现了800-830 nm范围内的放大,在806 nm处观察到的最佳增益为22 dB。

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