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微结构调控对Dy~(3+)掺杂GeSe_2-Ga_2Se_3-CsI玻璃红外发光性能的影响
引用本文:唐高,陈玮,罗澜.微结构调控对Dy~(3+)掺杂GeSe_2-Ga_2Se_3-CsI玻璃红外发光性能的影响[J].红外与激光工程,2010,39(1).
作者姓名:唐高  陈玮  罗澜
作者单位:中国科学院,上海硅酸盐研究所,上海,200050
基金项目:中国科学院上海硅酸盐研究所创新基金 
摘    要:采用传统熔融-淬冷法制备了掺杂O.1 mol%Dy~(3+)的GeSe_2-Ga_2Se_3-CsI玻璃,研究了其热稳定性、透过光谱和红外发射光谱,用拉曼光谱表征了玻璃结构.结果表明:在808 nm激发下,玻璃近红外发射荧光中心位于1.3μm,荧光半峰宽约90 nm;Dy~(3+)的1.3μm发光性能(~6F_(11/2)·~6H_(9/2)→~6H_(15/2)跃迁)由玻璃Dy~(3+)局域环境所决定.当I/Ga摩尔比固定为1时,Dy~(3+)的1.3μm荧光寿命随着Ge(Ga)I_xSe_(4-x)]、Ge(Ga)I_4]和Ga_2I_7]-新的低声子能量基团的形成而增加;当I/Ga摩尔比变化时,微小的玻璃组分变化导致Dy~(3+)局域环境晶体场的变化,从而引起Dy~(3+):1.3 μm发光寿命急剧变化,其最大值可达到2885μs.Dy~(3+)掺杂的GeSe_2-Ga_2Se_3-CsI玻璃可通过微结构调控获得较优良的1.3μm红外光输出.

关 键 词:微结构调控  Dy~(3+)离子  1.3μm荧光  1.3μm  emission

Influence of structural modification on properties of Dy~(3+)-doped chalcohalide glass infrared fluorescence
TANG Gao,CHEN Wei,LUO Lan.Influence of structural modification on properties of Dy~(3+)-doped chalcohalide glass infrared fluorescence[J].Infrared and Laser Engineering,2010,39(1).
Authors:TANG Gao  CHEN Wei  LUO Lan
Abstract:The GeSe_2-Ga_2Se_3-CsI chalcohalide glasses doped with 0.1 mol% Dy~(3+) were prepared using traditional melting method.The thermal stability,transmission spectrum and infrared emission spectrum properties of the glasses were investigated.The structure of glasses was studied by Raman spectrum.Upon excitation at 808 nm diode laser,1.3μm.near-infrared fluorescence had been observed with a broad full width at half maximum(FWHM)of about 90 nm.The behavior of Dy~(3+)(~6F_(11/2)·~6H_(9/2)→~6H_(15/2) transition)in glasses was sensitive to its local environment.When I/Ga=1,the enhancement of lifetime in creased with the formation ofGe(Ga)I_xSe_(4-x)],Ge(Ga)I_4]andGa_2I_7]-low-phonon energy units.When I/Ga ratio changed,the symmetry of the crystal field changed synchronously with tiny compositional adjustments which caused the intense change of 1.3μm fluorescence lifetime,the maximum value was 2 885μs.Dy~(3+)-doped GeSe_2-Ga_2Se_3-CsI chalcohalide glasses can obtain 1.3μm excellent infrared fluorescence by structural modification.
Keywords:Structure modified  Dy~(3+)ions
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