Changchun Institute of Optics,Fine Mechanics and Physics,CAS
THE TRANSITION-PROBABILITY OF D-5(J)-F-7(0) AND HOLE-BURNING QUANTUM EFFICIENCY IN THE SRYBA1-YFCL0.5BR0.5-SM2+ SYSTEM | |
其他题名 | 论文其他题名 |
Song H. W.; Zhang J. H.; Gao D. K.; Huang S. H.; Yu J. Q. | |
1995 | |
发表期刊 | Optics Communications |
ISSN | 0030-4018 |
卷号 | 120期号:5—6页码:264-268 |
摘要 | We report the changes of the D-5(J)-F-7(0)(J=2, 1, 0) transition probability with composition y and its effect on the hole burning quantum efficiency in the SryBa1-yFCl0.5Br0.5:Sm2+ system. We observed that the D-5(J)-F-7(0) transition probability increases with the increase of Sr concentration. This result is attributed to the reduction of the energy separation between the D-5(J) level and the 4f5d bands, which makes the electron wave functions of D-5(J) states mix further with that of the 4f5d states. The dependence of the hole-burning quantum efficiency on the D-5(J)-F-7(0) transition probability was derived by the dynamical equations of the spectral hole burning of divalent samarium. Furthermore, the hole-burning experiments in SrFCl0.5Br0.5:Sm2+ and BaFCl0.5Br0.5:Sm2+ were performed under the same conditions. The experimental results present that the hole-burning quantum efficiency of SrFCl0.5Br0.5:Sm2+ is higher than that of BaFCl0.5Br0.5:Sm2+. |
收录类别 | SCI |
语种 | 英语 |
WOS记录号 | WOS:A1995TB70000008 |
引用统计 | |
文献类型 | 期刊论文 |
条目标识符 | http://ir.ciomp.ac.cn/handle/181722/25438 |
专题 | 中科院长春光机所知识产出 |
推荐引用方式 GB/T 7714 | Song H. W.,Zhang J. H.,Gao D. K.,et al. THE TRANSITION-PROBABILITY OF D-5(J)-F-7(0) AND HOLE-BURNING QUANTUM EFFICIENCY IN THE SRYBA1-YFCL0.5BR0.5-SM2+ SYSTEM[J]. Optics Communications,1995,120(5—6):264-268. |
APA | Song H. W.,Zhang J. H.,Gao D. K.,Huang S. H.,&Yu J. Q..(1995).THE TRANSITION-PROBABILITY OF D-5(J)-F-7(0) AND HOLE-BURNING QUANTUM EFFICIENCY IN THE SRYBA1-YFCL0.5BR0.5-SM2+ SYSTEM.Optics Communications,120(5—6),264-268. |
MLA | Song H. W.,et al."THE TRANSITION-PROBABILITY OF D-5(J)-F-7(0) AND HOLE-BURNING QUANTUM EFFICIENCY IN THE SRYBA1-YFCL0.5BR0.5-SM2+ SYSTEM".Optics Communications 120.5—6(1995):264-268. |
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