Condensed Matter Science and Technology Institute, Harbin Institute of Technology, Harbin 150001, China.
Opt Lett. 2012 Dec 1;37(23):4865-7. doi: 10.1364/OL.37.004865.
Excited by a 980 nm laser, upconversion emissions centered at 384 (Er3+:4G11/2→4I15/2) and 408 nm (Er3+:2H9/2→4I15/2) in Er3+/Yb3+ codoped polycrystalline CaWO4 were successfully obtained. The 4G11/2 and 2H9/2 states of Er3+ were verified to be thermally coupled levels, which can emit the shortest wavelength emissions for optical thermometry known so far. Based on the change of their intensity ratio with temperature, an excellent optical thermometer can be designed, which can provide accurate temperature measurement from room temperature up to 873 K. More importantly, the sensitivity achieved here is much higher than reported temperature sensors based on Er3+ green luminescence.
掺铒/掺镱多晶 CaWO4 在 980nm 激光激发下,可得到位于 384nm(Er3+:4G11/2→4I15/2)和 408nm(Er3+:2H9/2→4I15/2)的上转换发射峰。验证了 Er3+的 4G11/2 和 2H9/2 态为热耦合能级,可发射迄今已知的光学测温最短波长的发射。基于它们的强度比随温度的变化,可以设计出一个优良的光学温度计,可在室温到 873K 的温度范围内提供精确的温度测量。更重要的是,这里的灵敏度比基于 Er3+绿光发射的报道的温度传感器高得多。