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首页> 外文期刊>Thin Solid Films >Optical spectra of Zn_(1-x)Be_xTe mixed crystals determined by IR-VIS-UV ellipsometry and photoluminescence measurements
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Optical spectra of Zn_(1-x)Be_xTe mixed crystals determined by IR-VIS-UV ellipsometry and photoluminescence measurements

机译:红外-椭圆-紫外-椭圆偏振光度法和光致发光法测定Zn_(1-x)Be_xTe混合晶体的光谱

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摘要

Spectroscopic ellipsometry in the photon energy range from 0.04 eV to 6.50 eV is used for investigation of the optical response of Zr1_xBexTe crystals grown by a high-pressure Bridgman method in the composition range x ≤ 0.12. Infrared spectra display absorption bands centred between 411 cm-1 and 420 cm-1 associated with BeTe-type optical phonon modes. The positions of the transverse-optical and longitudinal-optical phonon modes have been found by modelling the line shape of the complex dielectric functions, 8 and Im(-ε-1), using a classical damped Lorentzian oscillator approach. Ellipsometric measurements in the VIS-UV range allow determination of the fundamental energy-gap (Eo) and the higher threshold energies (E1, E1 +△1, E2) originating from the band edge and spin-orbit splitting critical points. We have found that the Be content x = 0.12 causes an increase of the fundamental energy gap about 0.15 eV at room temperature when compared to the Eo = 2.23 eV of ZnTe crystal at the same temperature. Photoluminescence spectra were measured in the temperature range from 30 K to room temperature. Luminescence at temperature T>200 K is very weak. The peak positions of the exciton emission lines agree well with the Eo band-gaps derived from ellipsometric data if corrected for their temperature dependence.
机译:使用光子能量在0.04 eV至6.50 eV范围内的椭圆偏振光谱法研究通过高压Bridgman方法生长的Xr1_xBexTe晶体在x≤0.12范围内的光学响应。红外光谱显示与BeTe型光子声子模式相关的中心在411 cm-1和420 cm-1之间的吸收带。横向光子和纵向光子声子模式的位置已通过使用经典的阻尼洛伦兹振荡器方法对复介电函数8和Im(-ε-1)的线形进行建模来找到。 VIS-UV范围内的椭偏测量可以确定基本能隙(Eo)和源自带边缘和自旋轨道分裂临界点的较高阈值能量(E1,E1 +△1,E2)。我们已经发现,与相同温度下ZnTe晶体的Eo = 2.23 eV相比,Be含量x = 0.12导致室温下的基本能隙增加约0.15 eV。在从30 K到室温的温度范围内测量光致发光光谱。温度T> 200 K时的发光非常弱。如果对激子发射谱线的温度依赖性进行校正,则激子发射谱线的峰值位置与从椭圆偏振数据得出的Eo带隙非常吻合。

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  • 来源
    《Thin Solid Films》 |2011年第9期|p.2795-2800|共6页
  • 作者单位

    Institute of Mathematics and Physics, University of Technology and Life Sciences, S. Kaliskiego 7, PL-85796 Bydgoszcz, Poland;

    Department of Physics, Chemistry and Biology, Linkoeping University, SE-58183 Linkoeping, Sweden;

    Institute of Physics, Nicholas Copernicus University, Grudziqdzka 5, PL-87100 Torun, Poland;

    Institute of Physics, Nicholas Copernicus University, Grudziqdzka 5, PL-87100 Torun, Poland;

    Institute of Mathematics and Physics, University of Technology and Life Sciences, S. Kaliskiego 7, PL-85796 Bydgoszcz, Poland;

    Institute of Mathematics and Physics, University of Technology and Life Sciences, S. Kaliskiego 7, PL-85796 Bydgoszcz, Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ZnBeTe; Ellipsometry; Dielectric function; Lattice vibration; Interband transitions; Photoluminescence;

    机译:ZnBeTe;椭圆仪介电功能晶格振动;带间过渡;光致发光;

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