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Optimization of Mid-IR microstructured fiber laser based on dysprosium doped chalcogenide glass

机译:基于镝掺杂的硫属化物玻璃的中红外微结构光纤激光优化

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The paper illustrates the design and the optimization of a medium infrared (Mid-IR) microstructured fiber laser based on dysprosium doped chalcogenide glass, Dy:GaGeSbS. The investigation is performed realistically, by taking into account the spectroscopic parameters measured on samples of the aforesaid glasses. The aim is to investigate the feasibility of optical beam generation close to 4.4 μm wavelength. An output power of 107.2 mW with an input pump power of 1 W is calculated. This result indicates that the designed laser configuration can lead to a feasible medium infrared source which could find application in optical free propagation, biomedicine and sensing.
机译:本文说明了基于掺杂镝的硫酸硫化物玻璃,Dy:规范的介质红外(中红外)微结构化光纤激光的设计和优化。通过考虑在上述上述玻璃的样品上测量的光谱参数来实际地进行调查。目的是研究光束产生接近4.4μm波长的光束的可行性。计算具有1W的输入泵功率的107.2 MW的输出功率。该结果表明,设计的激光结构可以导致可行的介质红外源,其可以在光学自由传播,生物医学和传感中找到应用。

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