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首页> 外文期刊>Applied optics >ALGORITHM FOR THE DETERMINATION OF INTRINSIC OPTICAL CONSTANTS OF METAL FILMS - APPLICATION TO ALUMINUM
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ALGORITHM FOR THE DETERMINATION OF INTRINSIC OPTICAL CONSTANTS OF METAL FILMS - APPLICATION TO ALUMINUM

机译:金属薄膜固有光学常数的测定方法-在铝中的应用。

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Optical and electron-energy-loss data for evaporated-aluminum films have been critically analyzed and used in an iterative, self-consistent algorithm that represents a combination of the Kramers-Kronig analysis and the semiquantum-model application. The novel values of the intrinsic optical functions of aluminum have been determined in a wide spectral range from 200 mu m (6.2 meV) to 0.12 nm (10 keV). These functions are in accordance with recent calculations by Lee and Chang [Phys. Rev. B 49, 2362 (1994)], with dc conductivity measurements, and are in good agreement with both peak positions and line widths obtained from electron-energy-loss experiments. The results are examined for internal consistency by inertial and f-sum rules. [References: 56]
机译:已对蒸发铝膜的光能和电子能量损失数据进行了严格分析,并将其用于表示Kramers-Kronig分析和半量子模型应用程序结合的迭代自洽算法。铝的固有光学功能的新值已在200 µm(6.2 meV)至0.12 nm(10 keV)的宽光谱范围内测定。这些功能与Lee和Chang [Phys。 Rev.B 49,2362(1994)],具有直流电导率测量,并且与从电子能量损失实验获得的峰位置和线宽都非常一致。通过惯性和f-sum规则检查结果的内部一致性。 [参考:56]

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