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Modelling of a simple Dy3+ doped chalcogenide glass fibre laser for mid-infrared light generation

机译:一种简单的Dy 3 + 掺杂硫族化物玻璃纤维激光器的中红外光建模

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摘要

A simple Dy3+-doped chalcogenide glass fibre laser design for mid-infrared light generation is studied using a one dimensional rate equation model. The fibre laser design employs the concept of cascade lasing. The results obtained demonstrate that efficient cascade lasing may be achieved in practice without the need for fibre grating fabrication, as a sufficient level of feedback for laser action is provided by Fresnel light reflection at chalcogenide glass fibre–air interfaces. Further enhancement of the laser efficiency can be achieved by terminating one of the fibre ends with a mirror. A numerical analysis of the effect of the Dy3+ doping concentration and fibre loss on the laser operation shows that with 5 W of pump power, at 1.71 μm wavelength, output powers above 100 mW at ∼ 4.5 μm wavelength can be achieved with Dy3+ ion concentrations as low as 3 × 1019 cm−3, when fibre loss is of the order 1dB/m.
机译:利用一维速率方程模型研究了一种简单的Dy 3 + 掺杂硫族化物玻璃纤维激光器的中红外光产生方法。光纤激光器设计采用级联激光的概念。获得的结果表明,在实践中无需光纤光栅即可实现有效的级联激射,因为硫属化物玻璃纤维-空气界面处的菲涅耳光反射提供了足够水平的激光作用反馈。通过用反射镜端接光纤末端之一,可以进一步提高激光效率。对Dy 3 + 掺杂浓度和光纤损耗对激光操作的影响的数值分析表明,当泵浦功率为5 W时,波长为1.71μm,输出功率在100 mW以上时为〜4.5μm。当光纤损耗约为1dB时,Dy 3 + 离子浓度低至3×10 19 cm −3 即可实现波长/米。

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