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Manufacturing issues and optical properties of rare-earth (Y, Lu, Sc, Nd) aluminate garnets composite transparent ceramics

机译:稀土(Y,Lu,Sc,Nd)铝石榴石复合透明陶瓷的制造问题和光学性能

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摘要

In this work, a comparative study of reactive sintering and optical properties of three laser composite transparent ceramics doped with neodymium: Nd:YAG/Nd:YSIAG, Nd:YAG/Nd:LuAG and Nd:YS(1)AG/Nd:LuAG has been achieved. Samples were . manufactured thanks to pressureless co-sintering under vacuum of bilayer powder compacts. The reaction sequence from primary oxides to final garnet phases has been investigated. Similar dilatometric behavior was observed during reactive-sintering for each composition. Differential shrinkage can be thus accommodated to some extent. Second, this work has shown that the intermediate zone at composites interface is composed of single-phased garnet solid-solution with continuous evolution from one side to the other. The thickness of the interdiffusion zone was found to be limited to about 100 pm in all cases and appeared to be well described by classical diffusion laws of Fick and Whipple-Le Claire. The analyses of spectroscopic properties of transparent ceramics composites have finally shown that composite ceramics should be suitable to produce dual wavelength emission for terahertz generation. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项工作中,比较了三种掺钕的激光复合透明陶瓷的反应烧结和光学性能:Nd:YAG / Nd:YSIAG,Nd:YAG / Nd:LuAG和Nd:YS(1)AG / Nd:LuAG已经实现。样品是。由于双层粉末压块在真空下进行无压共烧结而制造。已经研究了从初级氧化物到最终石榴石相的反应顺序。对于每种组合物,在反应烧结期间观察到类似的膨胀特性。因此可以在一定程度上适应收缩差。其次,这项工作表明,复合材料界面处的中间区域由单相石榴石固溶体组成,从一侧到另一侧连续不断地演化。发现在所有情况下,相互扩散区​​的厚度均被限制在约100 pm,并且似乎由Fick和Whipple-Le Claire的经典扩散定律很好地描述了。透明陶瓷复合材料的光谱特性分析最终表明,复合陶瓷应适合产生太赫兹产生的双波长发射。 (C)2015 Elsevier B.V.保留所有权利。

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