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Predicting the refractive index o amorphous materials using the Bruggeman effective medium approximation

机译:使用Brugmeman有效介质近似预测无定形材料的折射率

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摘要

Previous studies have shown that the Lorentz-Lorenz relationship, or molar refractivity/specific refractivity effective medium approximation, enables a reasonable prediction of the refractive index of amorphous water ice, given the refractive index of crystalline water ice. In the current study, we show that the Bruggeman effective medium approximation provides an even closer match to measurements of the refractive index of several amorphous materials, given the refractive index of their crystalline phase. We show that the Bruggeman effective medium approximation provides a good match to measurements of the refractive index of amorphous ice as well. Thus, assuming that the volume fraction of the scattering centers is a constant for a given amorphous material (with respect to a given range of wavelengths) seems to be a more robust assumption than assuming that the molar mass and molar refractivity or specific refractivity are preserved in going from the crystalline state to the amorphous state of the same material. Our results have implications for astrophysics applications, as well as for the optics of non-crystalline materials in general. (C) 2020 Optical Society of America
机译:以前的研究表明,鉴于结晶水冰的折射率,Lorentz-Lorenz关系或摩尔折射率/特定折射率有效介质近似能够合理预测无定形水冰的折射率。在目前的研究中,考虑到其结晶相的折射率,Bruggeman有效介质近似提供了与几种无定形材料的折射率的测量更近的匹配。我们表明Brugmeman有效的中等近似提供了与无定形冰折射率的测量结果的良好匹配。因此,假设散射中心的体积分数是给定的非晶材料的常数(相对于给定的波长范围)似乎是比假设摩尔质量和摩尔折射率或特定折射率更强的稳健假设从结晶状态到相同材料的无定形状态。我们的结果对天体物理应用具有影响,以及一般非晶材料的光学。 (c)2020美国光学学会

著录项

  • 来源
    《Applied optics》 |2020年第28期|共6页
  • 作者

    Sela Maor; Haspel Carynelisa;

  • 作者单位

    Hebrew Univ Jerusalem Fredy &

    Nadine Herrmann Inst Earth Sci IL-91904 Jerusalem Israel;

    Hebrew Univ Jerusalem Fredy &

    Nadine Herrmann Inst Earth Sci IL-91904 Jerusalem Israel;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
  • 关键词

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