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首页> 外文期刊>IEEE sensors journal >Fluorescence decay characteristic of Tm-doped YAG crystal fiber for sensor applications, investigated from room temperature to 1400°C
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Fluorescence decay characteristic of Tm-doped YAG crystal fiber for sensor applications, investigated from room temperature to 1400°C

机译:从室温到1400°C研究的掺Tm的YAG光纤在传感器中的荧光衰减特性

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摘要

An yttrium aluminum garnet (YAG) crystal fiber with a thulium-doped end tip was specially grown by means of the laser heated pedestal growth approach and designed to be incorporated in a fiber-optic temperature probe. The fluorescence decay characteristics of the crystal fiber, including the temperature dependence of both the fluorescence lifetime and intensity, were comprehensively investigated. Experimental results indicated that the crystal fiber showed a monotonic relationship between the fluorescence lifetime and temperature with an average lifetime sensitivity of 3 Μs °C over a wide temperature range, taking measurement from room temperature to 1200°C. Good stability (up to 1400°C) was observed with high repeatability of the fluorescence lifetime during the annealing process carried out on the fiber over this temperature range. The fiber was found to be an excellent candidate material to be used as a fluorescence decay-based fiber thermometer probe and the results are presented on its performance.
机译:通过激光加热的基座生长方法专门生长了具有掺a末端的钇铝石榴石(YAG)晶体纤维,并设计用于光纤温度探头中。全面研究了光纤的荧光衰减特性,包括荧光寿命和强度的温度依赖性。实验结果表明,该晶体纤维在从室温到1200°C的宽温度范围内均显示出荧光寿命与温度之间的单调关系,平均寿命灵敏度为3 Ms°C。在该温度范围内对纤维进行的退火过程中,观察到了良好的稳定性(高达1400°C)和高荧光寿命的重复性。发现该纤维是用作基于荧光衰减的纤维温度计探头的极佳候选材料,并在其性能上给出了结果。

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