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Investigations on vacuum sintered ytterbium-doped YAG ceramic:a laser-host material

机译:对真空烧结镱掺杂YAG陶瓷的研究:激光宿主材料

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Laser-host ceramics are a new class of materials and have proved to be a good alternative to the single-crystals. They can be produced in large size with higher concentration of activator ions having more homogeneity which is difficult to achieve with the conventional single-crystal growth technology. Ytterbium (Yb)-doped yttrium aluminium garnet (YAG) is a very attractive laser-host material because of its broad emission band, low quantum defect, no excited state absorption or up-conversion loss and wide range of tunability. In the present work, 10 atm% Yb-doped YAG transparent ceramic was fabricated using nano-powder technology and vacuum sintering. Single-phase nano-powders of Yb:YAG were synthesized by a co-precipitation method and thereafter sintered under vacuum at 1750°C for 5 h. The as-sintered ceramic samples are of dark greenish colour which is attributed to the reduction of Yb~(3+) to Yb~(2+) during vacuum sintering. However, after annealing in air at 1350°C for 8 h they retain their natural colour attributed to the transformations from Yb~(2+) to Yb~(3+). The transmission spectra of the as-sintered polished ceramics show the presence of broad absorption bands near 250, 380, 480 and 630 nm due to the electronic transitions in the Yb~(2+) ion. These bands disappear after annealing in air. The well-established bands due to transitions in Yb~(3+) were observed between 900 and 1000 nm.
机译:激光宿主陶瓷是一类新的材料,已被证明是单晶的良好替代品。它们可以以大尺寸生产,具有较高浓度的活化剂离子,其具有更难以与传统的单晶生长技术实现的均匀性。 YTTerbium(YB) - 摩特钇铝石榴石(YAG)是一种非常有吸引力的激光主机材料,因为其宽的发射带,低量子缺陷,无兴奋的状态吸收或上转换损失和各种可调性。在本作工作中,使用纳米粉末技术和真空烧结制造10个ATM%YB掺杂的YAG透明陶瓷。通过共沉淀法合成Yb:YAG的单相纳米粉末,然后在真空下在1750℃下烧结5小时。烧结陶瓷样品具有深绿色的颜色,其归因于在真空烧结期间减少Yb〜(3+)至Yb〜(2+)。然而,在1350℃的空气中退火8小时后,它们将其自然颜色保留归因于来自Yb〜(2+)到Yb〜(3+)的转化。由于YB〜(2+)离子中的电子转变,所烧结抛光陶瓷的透射光谱显示出宽吸收带接近250,380,480和630nm的存在。在空气中退火后,这些带消失。在900和1000nm之间观察到由于YB〜(3+)过渡引起的良好的带。

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