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YAG:Cr{sup}(3+) for wide ranging temperature sensing: correlation of theory and experiment

机译:YAG:CR {SUP}(3+)对于广泛的温度感测:理论与实验相关性

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Results are presented on the cross-correlation of the results of an accurate theoretical model with experiment data obtained for YAG:Cr{sup}(3+) used as a temperature sensor, obtained over a wide range of temperature, including the cryogenic and biomedical (~37°C) region, and a close correlation is seen. Both sets of results support the hypothesis that the phonon-induced transitions between the 2{sup left}E and 4{sup left}A{sub}2 states have a significant effect on the lifetime of the YAG:Cr{sup}(3+) fluorescence at low temperatures, where the concept of a single equivalent phonon is proposed to account for the mixing effects of phonons with various energy, and is used to modify the single configurational coordinate model discussed. Typical temperature discrepancies between the theoretical and experimental systems are 0.4K at 300K, 0.8K at 500K and 0.4K at 900K.
机译:结果提出了一种与YAG的实验数据的精确理论模型结果的互相关:Cr {sup}(3+)用作温度传感器,在很多温度下获得,包括低温和生物医学(〜37°C)区域,并且看到紧密相关性。两组结果都支持假设,即音源引起的音源引起的2 {sup lef} e和4 {sup left} 2状态对YAG的寿命有显着影响:CR {SUP}(3 +)低温下的荧光,其中提出了单个等效声子的概念,以解释声子与各种能量的混合效果,并且用于修改讨论的单个配置坐标模型。理论和实验系统之间的典型温度差异为300k,0.8k为500k,900k为0.4k。

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