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首页> 外文期刊>Journal of Materials Research >Polycrystalline Yb~(3+)-Er~(3+)-co-doped YAG: Fabrication, TEM-EDX characterization, spectroscopic properties, and comparison with the single crystal
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Polycrystalline Yb~(3+)-Er~(3+)-co-doped YAG: Fabrication, TEM-EDX characterization, spectroscopic properties, and comparison with the single crystal

机译:多晶Yb〜(3 +)-Er〜(3+)共掺杂YAG:制备,TEM-EDX表征,光谱性质及与单晶的比较

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摘要

Yttrium aluminum garnet (YAG)-based ceramics represent a valuable alternative to single crystals as active media in laser devices for specific applications. In this connection, the 1.5-1.65 μm emission channel of Er~(3+)-doped YAG is of particular importance for the realization of diode pumped solid state lasers operating in the so-called 'eye-safe' region. A well-known drawback of this material is related to its small absorption cross section in correspondence to the diode pumping radiation at 940-980 nm. However, its emission performance can be significantly improved through sensitization with Yb~(3+) ions that can efficiently absorb the excitation radiation and transfer it to the Er~(3+) ions. This work deals with the fabrication of polycrystalline YAG co-doped with Er~(3+) and Yb~(3+) ions from oxide powders via solid state sintering in high vacuum conditions and its microstructural analysis by transmission electron microscopy-energy-dispersive x-ray spectroscopy to determine the dopants distribution and to assess their influence on the sintering process and on the spectroscopic properties. For this purpose, the absorption and emission spectra of the prepared material have been measured and compared with those of a single crystal having the same composition, appositely prepared by the micro-pulling down method. Suitable calculations have been finally carried out to verify the effective perspectives of application of the investigated ceramics as active lasing medium.
机译:基于钇铝石榴石(YAG)的陶瓷代表了单晶的宝贵替代品,可作为特定应用的激光设备中的活性介质。就此而言,掺Er〜(3+)的YAG的1.5-1.65μm发射通道对于实现在所谓的“人眼安全”区域中工作的二极管泵浦固态激光器特别重要。这种材料的一个众所周知的缺点是其吸收截面小,与940-980 nm的二极管泵浦辐射相对应。然而,通过Yb〜(3+)离子敏化可以显着改善其发射性能,可以有效吸收激发辐射并将其转移到Er〜(3+)离子。这项工作涉及在高真空条件下通过固态烧结从氧化物粉末中共掺入Er〜(3+)和Yb〜(3+)离子的多晶YAG及其通过透射电子显微镜-能量色散的微观结构分析X射线光谱法可确定掺杂剂分布并评估其对烧结过程和光谱性质的影响。为此目的,已经测量了所制备材料的吸收光谱和发射光谱,并将其与通过微拉法适当制备的具有相同组成的单晶的吸收光谱和发射光谱进行比较。最终进行了适当的计算,以验证所研究的陶瓷作为活性激光介质的有效应用前景。

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  • 来源
    《Journal of Materials Research》 |2014年第19期|2288-2296|共9页
  • 作者单位

    CNR ISTEC, National Research Council of Italy, Institute of Science and Technology for Ceramics, Faenza 48018, Italy, and Department of Glass and Ceramics, Institute of Chemical Technology, Prague, 166 28 Prague 6, Czech Republic;

    CNR ISTEC, National Research Council of Italy, Institute of Science and Technology for Ceramics, Faenza 48018, Italy;

    University of Lyon, INSA of Lyon, MATEIS UMR CNRS 5510, Villeurbanne 69621, France;

    University of Lyon, INSA of Lyon, MATEIS UMR CNRS 5510, Villeurbanne 69621, France;

    CNR IFAC, National Research Council of Italy, Institute of Applied Physics 'Nello Carrara', FI 10 50019, Italy;

    CNR INO, National Research Council of Italy, National Institute of Optics, Sesto Fiorentino (FI) 10 50019, Italy;

    CNR INO, National Research Council of Italy, National Institute of Optics, Sesto Fiorentino (FI) 10 50019, Italy;

    Dipartimento di Chimica, Universita di Parma, Parma (PR) 43121, Italy;

    Advanced Crystal Engineering, IMR, Tohoku University, Sendai 980-8577, Japan;

    Faculty of Chemistry, University of Wroclaw, Wroclaw PL-50-383, Poland;

    Institute of Light and Matter (ILM), UMR5306 CNRS-University Lyon1, University of Lyon, Villeurbanne 69622, France;

    Institute of Light and Matter (ILM), UMR5306 CNRS-University Lyon1, University of Lyon, Villeurbanne 69622, France;

    Institute of Light and Matter (ILM), UMR5306 CNRS-University Lyon1, University of Lyon, Villeurbanne 69622, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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