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首页> 外文期刊>Applied optics >Optical properties and electronic transitions of zinc oxide, ferric oxide, cerium oxide, and samarium oxide in the ultraviolet and extreme ultraviolet
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Optical properties and electronic transitions of zinc oxide, ferric oxide, cerium oxide, and samarium oxide in the ultraviolet and extreme ultraviolet

机译:紫外线和极端紫外线中氧化锌,氧化铁,氧化铈和钐氧化锌的光学性质和电子转变

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摘要

Optical properties and electronic transitions of four oxides, namely zinc oxide, ferric oxide, cerium oxide, and samarium oxide, are determined in the ultraviolet and extreme ultraviolet by reflection electron energy loss spectroscopy using primary electron energies in the range 0.3 - 2.0 keV. This technique allows the evaluation of the optical response in these ultraviolet spectral regions of a thin layer of material, and the analysis is straightforward. It is performed within the dielectric response theory by means of the QUEELS-epsilon(k,omega)-REELS software developed by Tougaard and Yubero [Surf. Interface Anal. 36, 824 ( 2004)]. The method consists basically in the fitting of experimentally determined single-scattering electron energy loss cross sections with a parametric energy loss function of the corresponding material, to the one calculated within a dielectric response formalism. The obtained refractive index and extinction coefficients, as well as the identified electronic transitions are compared, when available, with previously published results. (C) 2017 Optical Society of America
机译:通过反射电子能量损失光谱法测定在0.3-2.0kev范围内的初级电子能量,在紫外线和极端紫外线中测定四种氧化物,即氧化锌,氧化铁,氧化铈和钐氧化铈的光学性质和电子转变。该技术允许评估薄材料层的这些紫外光谱区域中的光学响应,并且分析很简单。通过Queels-Epsilon(K,Omega)-reels软件在介电响应理论内进行,由TouGaard和Yubero [Surf。界面肛门。 36,824(2004)]。该方法基本上包括在实验确定的单散射电子能量损失横截面的拟合中,其具有相应材料的参数能量损失函数,到在介电响应形式主义内计算的。将获得的折射率和消光系数以及可用的折射率和消光系数以及先前公布的结果进行比较。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第23期|共11页
  • 作者单位

    Univ Libre Bruxelles Serv Metrol Nucl CP 165-84 50 Av FD Roosevelt B-1050 Brussels Belgium;

    Univ Seville CSIC Inst Ciencia Mat Sevilla Av Americo Vespucio 49 E-41092 Seville Spain;

    Univ Seville CSIC Inst Ciencia Mat Sevilla Av Americo Vespucio 49 E-41092 Seville Spain;

    Univ Southern Denmark Dept Phys Chem &

    Pharm DK-5230 Odense M Denmark;

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