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首页> 外文期刊>Optics & Laser Technology >Broadband 2 mu m emission characteristics and energy transfer mechanism of Ho3+ doped silicate-germanate glass sensitized by Tm3+ ions
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Broadband 2 mu m emission characteristics and energy transfer mechanism of Ho3+ doped silicate-germanate glass sensitized by Tm3+ ions

机译:TM3 +离子致敏HO3 +掺杂硅酸盐锗玻璃的宽带2μm发射特性和能量转移机理

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摘要

The Tm3+/Ho3+ co-doped silicate-germanate glasses with good thermal properties were synthesized by high temperature melting method. 2.0 mu m emissions with broad effective half-width (231.5 nm) were successfully obtained in present Tm3+/Ho3+ co-doped glasses without obvious quenching upon excitation of a commercial 808 nm laser diode. To further understand 2 mu m fluorescence behaviors of the prepared glasses, energy transfer mechanism, efficiency, rate and microparameters from different levels of Tm3+ to Ho3+ ions have been obtained and discussed. In short, the Tm3+/Ho3+ co-doped silicate-germanate glass with excellent spectroscopic properties might be an attractive host material for 2 mu m broadband solid laser.
机译:通过高温熔化法合成具有良好热性质的TM3 + / HO3 +共掺杂硅酸盐 - 锗酯玻璃。 在本发明的TM3 + / HO3 +共掺杂玻璃中成功获得了具有宽效半宽度(231.5nm)的2.0μm的排放,而不是在商业808nm激光二极管激励时明显淬火。 为了进一步了解所制备的眼镜的2μm荧光行为,已经获得并讨论了来自不同水平的TM3 +至HO3 +离子的能量转移机理,效率,速率和微迁移量。 简而言之,TM3 + / HO3 +共掺杂的硅酸盐 - 锗酯玻璃具有出色的光谱性能,可能是2μM宽带固体激光器的吸引力的主体材料。

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