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Judd-Ofelt Spectroscopic Study of Er:ln:LiNbO_3 Crystals For Integrated Optics

机译:集成光学用Er:ln:LiNbO_3晶体的Judd-Ofelt光谱研究

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摘要

Er:In:LiNbO_3 crystals were grown by Czochralski method from congruent melts containing 0.5/0.5, 0.5/1.0, and 0.5/1.5 mol%/ mol% Er_2O_3/In_2O_3. The Er and In concentrations in the crystals were determined by neutron activation analysis. The refractive indices at the 473,633, and 1536 nm wavelengths were measured by prism coupling technique. The unpolarized Er~(3+) and OH absorption spectra of the crystals were measured at room temperature. The Er~(3+) absorption cross-section spectra were determined, and the Er~(3+) spectroscopic properties were analyzed by Judd-Ofelt (J-O) theory. The In segregation coefficient is 1.20 + 0.06, 0.95 + 0.05, and 0.89+0.05, respectively, and the Er concentrations in all of the three crystals studied have a nearly same value of 1 mol%. The ordinary index decreases while the extraordinary index increases with the increased In doping level. The 0.5 and 1.0 mol% In_2O_3-doped two crystals are below while the 1.5 mol% In_20_3-doped crystal is above the photorefractive threshold concentration. The Er~(3+) absorption cross sections of some transitions change definitely due to In codoping, but reveal a weak dependence on the In_2O_3 doping level. The J-O-predicted spectroscopic parameters show similar In codoping effects. The In codoping hardly affects the Er~(3+) 1.5 urn radiative lifetime.
机译:通过Czochralski法从包含0.5 / 0.5、0.5 / 1.0和0.5 / 1.5mol%/ mol%Er_2O_3 / In_2O_3的全同熔体中生长Er:In:LiNbO_3晶体。通过中子活化分析确定晶体中的Er和In浓度。通过棱镜耦合技术测量在473,633和1536 nm波长处的折射率。在室温下测量晶体的非偏振Er〜(3+)和OH吸收光谱。测定了Er〜(3+)的吸收截面谱,并通过Judd-Ofelt(J-O)理论分析了Er〜(3+)的光谱性质。 In偏析系数分别为1.20 + 0.06、0.95 + 0.05和0.89 + 0.05,并且所研究的所有三个晶体中的Er浓度具有几乎相同的1mol%的值。随着In掺杂水平的增加,寻常指数降低,而异常指数增加。掺杂0.5和1.0mol%的In_2O_3的两个晶体低于光折射阈值浓度,而掺杂1.5mol%的In_220_3的两个晶体高于光折射阈值浓度。某些跃迁的Er〜(3+)吸收截面肯定由于In共掺杂而改变,但显示出对In_2O_3掺杂水平的弱依赖性。 J-O预测的光谱参数显示出相似的In共掺杂效应。 In共掺杂几乎不会影响Er〜(3+)1.5 urn的辐射寿命。

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  • 来源
    《Journal of the American Ceramic Society》 |2011年第5期|p.1460-1466|共7页
  • 作者单位

    Department of Opto-electronics and Information Engineering, School of Precision Instruments and Opto-electronics Engineering, Tianjin University, Tianjin 300072, China,Key Laboratory of Optoelectronics Information and Technical Science, Ministry of Education, Tianjin University,Tianjin 300072, China;

    Department of Opto-electronics and Information Engineering, School of Precision Instruments and Opto-electronics Engineering, Tianjin University, Tianjin 300072, China,Key Laboratory of Optoelectronics Information and Technical Science, Ministry of Education, Tianjin University,Tianjin 300072, China;

    Department of Opto-electronics and Information Engineering, School of Precision Instruments and Opto-electronics Engineering, Tianjin University, Tianjin 300072, China,Key Laboratory of Optoelectronics Information and Technical Science, Ministry of Education, Tianjin University,Tianjin 300072, China,Department of Electronic Engineering, City University of Hong Kong, Kowloon, Hong Kong, China;

    Department of Electronic Engineering, City University of Hong Kong, Kowloon, Hong Kong, China;

  • 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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  • 正文语种 eng
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