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Optical properties of metallic films for vertical-cavity optoelectronic devices

机译:垂直腔光电器件金属膜的光学特性

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We present models for the optical functions of 11 metals used as mirrors and contacts in optoelectronic and optical devices: noble metals (Ag, Au, Cu), aluminum, beryllium, and transition metals (Cr, Ni, Pd, Pt, Ti, W). We used two simple phenomenological models, the Lorentz-Drude (LD) and the Brendel-Bormann (BB), to interpret both the free-electron and the interband parts of the dielectric response of metals in a wide spectral range from 0.1 to 6 eV. Our results show that the BE model was needed to describe appropriately the interband absorption in noble metals, while for Al, Be, and the transition metals both models exhibit good agreement with the experimental data. A comparison with measurements on surface normal structures confirmed that the reflectance and the phase change on reflection from semiconductor-metal interfaces (including the case of metallic multilayers) can be accurately described by use of the proposed models for the optical functions of metallic films and the matrix method for multilayer calculations. (C) 1998 Optical Society of America. [References: 77]
机译:我们为光电和光学设备中用作反射镜和触点的11种金属的光学功能提供模型:贵金属(Ag,Au,Cu),铝,铍和过渡金属(Cr,Ni,Pd,Pt,Ti,W )。我们使用了两个简单的现象学模型,即Lorentz-Drude(LD)和Brendel-Bormann(BB),在0.1至6 eV的宽光谱范围内解释了金属介电响应的自由电子和带间部分。我们的结果表明,需要使用BE模型来恰当地描述贵金属中的带间吸收,而对于Al,Be和过渡金属,这两个模型与实验数据都显示出良好的一致性。通过与表面法向结构的测量结果进行比较,可以确认,通过使用所提出的金属膜和金属膜的光学功能模型,可以准确地描述半导体-金属界面(包括金属多层的情况)的反射率和反射相变。多层计算的矩阵方法。 (C)1998年美国眼镜学会。 [参考:77]

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