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Optical temperature sensing with CaWO4:Yb3+/Er3+ phosphors driven by a 405 nm laser diode

机译:用Cawo4的光学温度感测:由405nm激光二极管驱动的YB3 + / ER3 +磷光体

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摘要

Traditionally, the 980 nm laser is used as the excitation source for Yb3+/Er3+ codoped phosphors. Different from this conventional way, it is shown here that the as-prepared CaWO4:Yb3+/Er3+ (5/1 mol %) phosphors can be effectively triggered by the commonly used and cheap 405 nm laser diode. On such excitation, the Er3+ ion's characteristic green emission, which is ascribed to the H-2(11/2)/S-4(3/2)-I-4(15/2) transitions, is successfully detected with a good signal to noise ratio. The green emission's response to the temperature change is investigated in the 93-813 K range. It is confirmed that the H-2(11/2)-I-4(15/2) and S-4(3/2)-I-4(15/2) transitions obey the Boltzmann distribution well, which are thus suitable for optical ratiometric temperature measurement. Their maximum relative sensitivity is found to be 10.41% K-1 at 93 K.
机译:传统上,980nm激光用作YB3 + / ER3 +编码磷光体的激发源。 与这种常规方式不同,这里示出了通过常用的和廉价的405nm激光二极管有效地触发AS制备的Cawo4:Yb3 + / Er3 +(5/1mol%)磷光体。 在这种激励下,ER3 +离子的特征绿色发射,其归因于H-2(11/2)/ s-4(3/2)-I-4(15/2)转变,并用良好检测 信噪比。 在93-813K范围内研究了绿色排放对温度变化的反应。 确认H-2(11/2)-I-4(15/2)和S-4(3/2)-I-4(15/2)过渡良好地遵守Boltzmann分布,这是 适用于光学比例测量。 它们的最大相对灵敏度被发现为93k的10.41%K-1。

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