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Er3+/Yb3+共掺杂的氟氧化物玻璃陶瓷中新的能量传输过程
引用本文:赵丽娟,徐晓轩,王鲲,唐莉勤,许京军,张光寅.Er3+/Yb3+共掺杂的氟氧化物玻璃陶瓷中新的能量传输过程[J].南开大学学报,2002,35(3):60-65.
作者姓名:赵丽娟  徐晓轩  王鲲  唐莉勤  许京军  张光寅
作者单位:南开大学物理学院光子学中心,南开大学物理学院光子学中心,南开大学物理学院光子学中心,南开大学物理学院光子学中心,南开大学物理学院光子学中心,南开大学物理学院光子学中心 天津,300071,天津,300071,天津,300071,天津,300071,天津,300071,天津,300071
基金项目:National Nature Science Foundation of China ( 6 0 1 780 2 4 ),Nature Science Foundation of Tianjin( 0 1 36 0 34 1 1 )
摘    要:为了研究铒离子的发光和氟氧化物玻璃中形成的氟化物微晶的关系,制备了三种掺饵的氟氧化物玻璃,用X射线衍射分析了样品中形成的氟化物微晶,从632.8nm激光激发时间的发射光谱中,首次发现了一种新的氟氧化物玻璃基质发光的现象。在氟氧化物玻璃中如果没有形成氟化物微晶,铒掺杂于玻璃中,632.8nm激光激发时激发态的铒离子容易将能量传递给基质并引起基质发光;如果将镱和铒离子共同掺入氟氧化物玻璃中,容易形成含稀土铒镱的氟化物微晶,含微晶的玻璃又叫玻璃陶瓷,由于氟化物的声子能量较小,632.8nm激光激发时激发态的铒离子的无辐射弛豫几率较小,铒离子的发光较强,在玻璃中形成含稀土氟化物微晶可以减小基质的发光强度,这是提高铒离子发光的有效手段之一。

关 键 词:Er^3+  Yb^3+  氟氧化物玻璃陶瓷  能量传输  基质发光  铒离子发光  稀土掺杂  氟化物微晶  

A NEW CHANNEL OF ENERGY TRANSFER IN OXYFLUORIDE GLASS DOPED WITH Er3+/Yb3+
ZHAO Lijuan,XU Xiaoxuan,WANG Kun,TANG Liqin,XU Jingjun,ZHANG Guangyin.A NEW CHANNEL OF ENERGY TRANSFER IN OXYFLUORIDE GLASS DOPED WITH Er3+/Yb3+[J].Acta Scientiarum Naturalium University Nankaiensis,2002,35(3):60-65.
Authors:ZHAO Lijuan  XU Xiaoxuan  WANG Kun  TANG Liqin  XU Jingjun  ZHANG Guangyin
Abstract:Three kinds of oxyfluoride glass were fabricated with the aim of studying the relation between Er 3+ luminescence and the fluoride micro-crystallite formed in the oxyfluoride glass. X-ray diffraction pattern showed the crystallization of the different sample. A new matrix luminescence in the oxyfluoride glass doped with Er 3+ is found firstly in PL spectrum by 632.8nm laser excitation. The excited energy in the oxyfluoride glass with few or no fluoride micro-crystallites transfers to matrix by the excited Er 3+ to cause matrix luminescence after excited by 632.8nm laser. Yb 3+ co-doping into the oxyfluoride glass doped with Er 3+ is benefit to form fluoride micro-crystallite. After excited by 632.8nm laser, the excited energy transfer to the rare earth ions and cause Er 3+ luminescence in the oxyfluoride glass-ceramics with fluoride micro-crystallites. The bright up-conversion luminescence of Er 3+ in the oxyfluoride glass-ceramics co-doped with Er 3+-Yb 3+ is obtained. Decrease the new energy transition of the matrix can increase the Er 3+ luminescent intensity.$$$$
Keywords:energy transition processes  luminescence of the matrix  Er    3+ luminescence  oxyfluoride glass  glass-ceramics
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