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Effect of OH^- on fluorescence properties in 1.5-1.6 μm for Er:Yb:YCOB crystal
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作者 Degao Zhong Chen Hu +9 位作者 Shakir Ullah Hui Xu Jianhong Li Fei You Dongjuan Wang Shijia Sun Weijin Kong Jie Tang zhenghe yu Bing Teng 《Journal of Rare Earths》 SCIE EI CAS CSCD 2019年第9期924-930,I0001,共8页
FTIR absorption spectra indicate that H^+can easily enter the crystal structure and form OH^-centers in Er:Yb:YCOB and O-H bonds prefer to lie in the a-c plane.Within our current studied concentration level,crystal sa... FTIR absorption spectra indicate that H^+can easily enter the crystal structure and form OH^-centers in Er:Yb:YCOB and O-H bonds prefer to lie in the a-c plane.Within our current studied concentration level,crystal samples with higher OH-abso rption coefficie nts demonstrate stro nger fluo rescence intensity and longer fluorescence lifetime at 1535 nm.As the stretching vibration energy of OH-group approximately corresponds to the energy gap between the 4 I11/2 and 4 I13/2 levels of Er^3+,and thus,OH^-ions can shorten the fluorescence lifetime of Er^3+-4I11/2 level by the phonon-assisted cross-relaxation process between the Er^3+and OH-ions.Our curre nt results confirm that a certain conte nt of OH ions can enhance the ene rgy transfer process from Yb^3+to Er^3+and subsequently promote fluorescence output in 1.5-1.6μm. 展开更多
关键词 Er:Yb:YCOB CRYSTAL OH^-ions FLUORESCENCE OUTPUT efficiency Energy transfer process RARE earths
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