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Optical Temperature Sensor Based on Green Fluorescence of Er2O3 3Nb2O5 Phosphor

机译:基于Er 2 O 3 3Nb 2 O 5 荧光粉绿色荧光的光学温度传感器

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摘要

We report an optical temperature sensor based on the thermal effect of fluorescence intensity ratio of 980-nm upconverted green 530- and 550-nm emissions of ErO 3NbO phosphor. The sensor consists of only a 980-nm LD, two narrow-band interference filters and two Si-photocells, while being without the use of optical lens to collect the fluorescence. Thermal effect on the photocell output was calibrated. The results show that the output has a linear relation to the temperature and the linearity is independent of input power. The performance characterization shows that the sensor exhibits a relative sensitivity (5– in the temperature range of 303–353 K. The setup is applicable to other Er-doped materials with a higher relative sensitivity.
机译:我们报告了基于980 nm上转换的ErO 3NbO荧光粉的530和550 nm绿色发射的荧光强度比的热效应的光学温度传感器。该传感器仅由一个980 nm LD,两个窄带干涉滤光片和两个Si光电管组成,而无需使用光学透镜来收集荧光。校准了对光电管输出的热效应。结果表明,输出与温度成线性关系,线性与输入功率无关。性能表征表明该传感器表现出相对灵敏度(在303–353 K的温度范围内为5–。该设置适用于其他具有较高相对灵敏度的掺Er材料。

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