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Luminescence of YAG:Dy and YAG:Dy,Er crystals to 1700 degrees C

机译:YAG的发光:DY和YAG:DY,ER晶体至1700℃

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摘要

Reported here are measurements aimed at development of high temperature luminescence-based fibre optic thermometry for temperatures up to at least 1700 degrees C. Cylindrical crystal samples of YAG:Dy(1%) and YAG:Dy(1.5%),Er(0.5%) were fabricated by the co-precipitation method. The optical system was comprised of Nd:YAG 355 nm laser light injected into one leg of flexible bifurcated optical fibre connected to a sapphire light pipe. The input end is water cooled and the sensing end is inside a furnace in proximity to the crystal. The emission originates from the Dy3+ dopant. Decay times for the I-4(15/2)-H-6(15/2) (456 nm) transition in the YAG:Dy,Er host ranged from 856 ns at 1600 degrees C to 401 ns at 1700 degrees C. Signals taken at 10 degrees C intervals were clearly resolvable. Decay times appeared constant at 800 degrees C and below with average values of 863 mu s for YAG:Dy and 734 mu s for YAG:Dy,Er. Decay times from these two materials appear to converge to the same value at high temperatures. These results were achieved with laser excitation of 100 to 150 mu J. The results were compared to physical models both of which yielded reasonable empirical agreement for the limited amount of data. Thermal sensitivity determined from a multiphonon model shows that decay times change by 1% per degree at 1400 degrees C and 0.9% at 1700 degrees C. Dy emission was also detected at 405, 400 and 389 nm at 1575 degrees C and 1700 degrees C and showed the expected temperature dependence.
机译:这里报道的是针对高温发光的光纤温度开发的测量,用于温度高达1700摄氏度的圆柱形晶体样品:Dy(1%)和YAG:Dy(1.5%),ER(0.5%) )通过共沉淀法制造。光学系统由Nd:YAG 355nm激光器组成,注入到连接到蓝宝石光管的柔性分叉光纤的一条腿中。输入端是水冷,传感端在炉内靠近晶体。发射源自DY3 +掺杂剂。在YAG的I-4(15/2)-H-6(15/2)(15/2)(456nm)过渡的衰变时间:Dy,ER宿主在1600℃至401ns的856ns,在1700℃下。以10度C间隔采取的信号清晰可解决。衰变时间在800摄氏度和下面似乎恒定,平均值为863亩,为YAG:DY和734 MU S为YAG:DY,ER。从这两种材料的衰减时间似乎会聚到高温下的相同值。通过100至150μm的激光激发实现这些结果。结果与物理模型进行比较,这两者都产生了合理的经验协议,以获得有限的数据。来自多光模型确定的热敏率表明,衰减时间在1400℃下,每度为1%,0.9%在1700℃下0.9%,在405,400和389nm处也在1575℃和1700℃下检测到0.9%。显示了预期的温度依赖。

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