Er3+ Y3+ Yb3+ 离子共掺杂的氧化铝发光材料的制备及其表征" /> Er3+ Y3+ Yb3+ 离子共掺杂的氧化铝发光材料的制备及其表征" /> Preparation and Characterization of Er3+Y3+Yb3+ Co-doped Al2O3 Luminescence Materials" /> <span class="fontstyle0">Preparation and Characterization of Er</span><sup>3+</sup><span class="fontstyle2">,</span><span class="fontstyle0">Y</span><sup>3+</sup><span class="fontstyle2">,</span><span class="fontstyle0">Yb</span><sup>3+</sup> <span class="fontstyle0">Co-doped Al</span><sub>2</sub><span class="fontstyle0">O</span><sub>3</sub> <span class="fontstyle0">Luminescence Materials</span>
Journal of Jilin Institute of Chemical Technology, 2018, 35(3): 58-63    doi: 10.16039/j.cnki.cn22-1249.2018.03.014
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Preparation and Characterization of Er3+Y3+Yb3+ Co-doped Al2O3 Luminescence Materials
ZHANG Yun-peng
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Abstract  With the development of optical communicationsLight-emitting materials used for the amplifier
used in optical communication and amplifier requirements more and more and more demanding. In optical
communication systems
due to the structure of the rare earth-doped fiber amplifier makes it impossible to be
integrated
people began to consider the development of planar erbium doped waveguide amplifier ( EDWA) .It
is use of optical waveguides doped rare earth erbium ions to achieve stimulated emission pumping light under.
Of Y
3+Yb3+and of Er3+ co-doped Al2O3 powdersan attempt to increase of Er3+ in the matrix dispersion and
uniformity.Reduce the photon quenching centers in the material of the erbium -doped ions concentration
to
study the modulation of different concentrations of Yb
3+ co-doped material microstructure. And luminescent
properties of Al
2O3 were investigatedin order to obtain excellent performance of the alumina
luminous materials.

Key wordserbium-doped waveguide amplifiers      luminescent materials      the matrix material      alumina
     
Published: 25 March 2018
:  TP 273  
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ZHANG Yun-peng
Cite this article:   
ZHANG Yun-peng. Preparation and Characterization of Er3+Y3+Yb3+ Co-doped Al2O3 Luminescence Materials[J]. Journal of Jilin Institute of Chemical Technology, 2018, 35(3): 58-63.
URL:  
https://xuebao.jlict.edu.cn/EN/10.16039/j.cnki.cn22-1249.2018.03.014     OR     https://xuebao.jlict.edu.cn/EN/Y2018/V35/I3/58