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Selective thermal emission of directionally solidified Al2O3/Y3-xErxAl5O12 eutectics: Influence of the microstructure, temperature and erbium content

机译:定向凝固Al2O3 / Y3-xErxAl5O12共晶的选择性热辐射:微观结构,温度和含量的影响

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摘要

Directionally solidified eutectic rods of Al2O3-Y3−xErxAl5O12 (0 ≤ x ≤ 3) composition have been grown using the laser floating zone method at processing rates of 25 mm/h and 750 mm/h. For all the samples the microstructure presents the same morphology, consisting of an interpenetrated 3D eutectic network of both Al2O3 and garnet phases, while eutectic interspacing strongly depends on the solidification rate. Optical absorption, luminescence and thermal emission have been investigated as a function of the growth rate and the erbium content. From the luminescence characterization it can be concluded that erbium ions are present in the eutectic only in the garnet phase. Near infrared thermal emission has been measured at temperatures ranging from 1000 to 1500 °C. Selective emission consisting of an emission band at 1540 nm and a weaker line at 970 nm, ascribed to the radiative de-excitation of the thermally excited Er3+ ions from the 4I13/2 and 4I11/2 multiplets to the 4I15/2 ground state respectively, has been detected in all the samples containing erbium. The influence of the erbium content, the microstructure and the temperature on the thermal emission has been investigated. The strongest selective emission has been obtained for samples with x=3 although it does not increase proportionally to the erbium content. The thermal emission becomes more intense when the temperature is increased but the selective emission seems to saturate at temperatures higher than 1300 °C. This effect is especially noticeable for x=3 and is attributed to thermally activated non-radiative de-excitation channels. It is suggested that these channels become effective through energy transfer among Er3+ ions and towards killers.
机译:Al2O3-Y3-xErxAl5O12(0≤x≤3)成分的定向凝固共晶棒已使用激光浮区法以25 mm / h和750 mm / h的处理速率生长。对于所有样品,微观结构均呈现相同的形态,由Al2O3和石榴石相互穿的3D共晶网络组成,而共晶间距很大程度上取决于凝固速率。已经研究了光吸收,发光和热发射与生长速率和the含量的关系。从发光特性可以得出结论,离子仅在石榴石相中存在于低共熔物中。在1000至1500°C的温度范围内已测量到近红外热辐射。选择性发射由1540 nm的发射带和970 nm的较弱谱线组成,分别归因于热激发的Er3 +离子从4I13 / 2和4I11 / 2多重态到4I15 / 2基态的辐射去激发,在所有含样品中都被检测到。研究了content含量,显微组织和温度对热辐射的影响。对于x = 3的样品,获得了最强的选择性发射,尽管它与not含量不成比例地增加。当温度升高时,热​​辐射会变得更加强烈,但是选择性辐射似乎会在高于1300°C的温度下达到饱和。对于x = 3,该效应尤其明显,并且归因于热激活的非辐射去激励通道。建议这些通道通过Er3 +离子之间的能量传递和朝向杀手的传递而变得有效。

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