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Influence of Doping and Excitation Powers on Optical Thermometry in Yb3+-Er3+ doped CaWO4

机译:掺杂和激发功率对掺Yb3 + -Er3 +的CaWO4中光学测温的影响

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摘要

Optical thermometry has been widely studied to achieve an inaccessible temperature measurement in submicron scale and it has been reported that the temperature sensitivity depends mainly on host types. In this work, we propose a new method to improve the optical temperature sensitivity of Yb3+-Er3+ co-doped CaWO4 phosphors by doping with Li+, Sr2+, and Mg2+ ions and by controlling excitation powers of 980 nm laser. It is found that the thermometric parameters such as upconversion emission intensity, intensity ratio of green-to-red emission, fluorescence color, emission intensity ratios of thermally coupled levels (2H11/2/4S3/2), and relative and absolute temperature sensitivity can be effectively controlled by doping with Li+, Sr2+, and Mg2+ ions in the Yb3+-Er3+ co-doped CaWO4 system. Moreover, the relative sensitivity SR and the absolute sensitivity SA are proved to be dependent on the pump power of 980 nm laser. The sensitivities of SR and SA in Yb3+-Er3+ co-doped CaWO4 increase about 31.5% and 12%, respectively, by doping with 1 mol% Sr2+.
机译:光学测温已被广泛研究以实现亚微米级的温度测量,并且据报道温度灵敏度主要取决于宿主类型。在这项工作中,我们提出了一种通过掺杂Li +来提高Yb 3 + -Er 3 + 共掺杂的CaWO4荧光粉的光学温度灵敏度的新方法。 ,Sr 2 + 和Mg 2 + 离子并通过控制980 nm激光的激发功率来实现。发现上转换发射强度,绿红发射强度比,荧光色,热耦合能级发射强度比( 2 H11 / 2 / 4 S3 / 2),并且可以通过掺杂Li + ,Sr 2 + 和Mg 2+来有效地控制相对和绝对温度敏感性Yb 3 + -Er 3 + 共掺杂的CaWO4系统中的离子。此外,相对灵敏度SR和绝对灵敏度SA被证明取决于980 nm激光器的泵浦功率。通过掺入1 mol%Sr <,Yb 3 + -Er 3 + 共掺杂的CaWO4中SR和SA的敏感性分别增加约31.5%和12%。 sup> 2 +

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