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Rare Earth Doped Yttrium Aluminum Garnet (YAG) Selective Emitters

机译:稀土掺杂钇铝石榴石(YAG)选择性发射极

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摘要

As a result of their electron structure, rare earth ions in crystals at high temperature emit radiation in several narrow bands rather than in a continuous blackbody manner. This study presents a spectral emittance model for films and cylinders of rare earth doped yttrium aluminum garnets. Good agreement between experimental and theoretical film spectral emittances was found for erbium and holmium aluminum garnets. Spectral emittances of films are sensitive to temperature differences across the film. For operating conditions of interest, the film emitter experiences a linear temperature variation whereas the cylinder emitter has a more advantageous uniform temperature. Emitter efficiency is also a sensitive function of temperature. For holminum aluminum garnet film the efficiency is 0.35 at 1446K but only 0.27 at 1270 K.
机译:由于其电子结构,晶体中的稀土离子在高温下会以几个窄带发射辐射,而不是以连续黑体的方式发射。这项研究提出了稀土掺杂钇铝石榴石的薄膜和圆柱的光谱发射模型。发现experimental和铝石榴石的实验和理论薄膜光谱发射率之间具有良好的一致性。薄膜的光谱发射率对整个薄膜的温差敏感。对于感兴趣的操作条件,薄膜发射器会经历线性温度变化,而圆柱发射器则具有更有利的均匀温度。发射极效率也是温度的敏感函数。对于铝制石榴石铝膜,在1446K时效率为0.35,而在1270 K时效率仅为0.27。

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