Wei Tao, Tian Ying, Chen Fangze, Cai Muzhi, Zhang Junjie, Jing Xufeng, Wang Fengchao, Zhang Qinyuan, Xu Shiqing
College of Materials Science and Engineering, China Jiliang University, Hangzhou 310018, PR China.
Institute of Optoelectronic Technology, China Jiliang University, Hangzhou 310018, PR China.
Sci Rep. 2014 Aug 14;4:6060. doi: 10.1038/srep06060.
Er(3+) doped Y2O3 and Nb2O5 modified germanate glasses with different Er(3+) concentrations were prepared. J-O intensity parameters were computed to estimate the structural changes due to the additions of Y2O3 and Nb2O5. The main mid-infrared spectroscopic features were investigated. To shed light on the observed mid-infrared radiative behavior, 975 nm and 1.53 μm emission spectra along with their decay lifetimes were also discussed. Moreover, the energy transfer processes of (4)I11/2 and (4)I13/2 level were quantitatively analyzed. In view of the experimental lifetimes, the simplified rate equation was utilized to calculate the energy transfer upconversion processes of upper and lower laser level of 2.7 μm emission. The theoretical calculations are in good agreement with the observed 2.7 μm fluorescence phenomena. Finally, the stimulated emission and gain cross sections were calculated and the results indicate that Er(3+) doped germanate glasses have great potential for mid-infrared application.
制备了不同Er(3+)浓度的Er(3+)掺杂Y2O3和Nb2O5改性锗酸盐玻璃。计算了J-O强度参数,以估计由于添加Y2O3和Nb2O5而引起的结构变化。研究了主要的中红外光谱特征。为了阐明观察到的中红外辐射行为,还讨论了975nm和1.53μm发射光谱及其衰减寿命。此外,还对(4)I11/2和(4)I13/2能级的能量转移过程进行了定量分析。根据实验寿命,利用简化的速率方程计算了2.7μm发射上、下激光能级的能量转移上转换过程。理论计算结果与观察到的2.7μm荧光现象吻合良好。最后,计算了受激发射截面和增益截面,结果表明Er(3+)掺杂锗酸盐玻璃在中红外应用方面具有很大潜力。