Yang Li-wen, Liu Zheng-wei, Xiao Si-guo
Faculty of Material and Photo-electronic Physics, Xiangtan University, Xiangtan 411105, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2004 Jul;24(7):779-83.
Under 980 nm excitation, we obtained five intense up-conversion luminescence bands in Er3+ -Yb3+ -Tm3+ co-doped CdF2: PbF2-based glass as follows: infrared (800 nm), red (645 nm), green (545 nm and 525 nm), blue (480 nm ) and violet (407 nm) up-conversion luminescence. With the addition of Tm3+ , the intensity of 480 nm blue luminescence increased notably compared with that of co-doped Yb3+ -Er3+ sample, which attributed to Tm3+ special energy level structure; logI-logP plot of the luminescence intensity versus pump power shows that 480 nm luminescence emission is a two-photon excitation process induced by the cooperative up-conversion between two Yb3+ ions and the slope of logI-logP plot decreases gradually with increasing pump power and shows a tendency to bend down. The up-conversion mechanism is analyzed in detail under 980 nm semiconductor laser excitation; the dependence of 480 nm up-conversion luminescence intensity on the pump power under the steady states is discussed by using rate equation and the results agree well with the experiments.
在980 nm激发下,我们在Er3+ -Yb3+ -Tm3+共掺杂的CdF2:PbF2基玻璃中获得了五个强烈的上转换发光带,具体如下:红外(800 nm)、红色(645 nm)、绿色(545 nm和525 nm)、蓝色(480 nm)和紫色(407 nm)上转换发光。随着Tm3+的加入,与共掺杂Yb3+ -Er3+样品相比,480 nm蓝色发光强度显著增加,这归因于Tm3+特殊的能级结构;发光强度与泵浦功率的logI-logP图表明,480 nm发光发射是由两个Yb3+离子之间的协同上转换诱导的双光子激发过程,并且logI-logP图的斜率随着泵浦功率的增加而逐渐减小,并呈现出向下弯曲的趋势。在980 nm半导体激光激发下详细分析了上转换机制;利用速率方程讨论了稳态下480 nm上转换发光强度对泵浦功率的依赖性,结果与实验吻合良好。