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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >FLEXIBLE CONSTRUCTION OF ERROR FUNCTIONS AND THEIR MINIMIZATION - APPLICATION TO THE CALCULATION OF OPTICAL CONSTANTS OF ABSORBING OR SCATTERING THIN-FILM MATERIALS FROM SPECTROPHOTOMETRIC DATA
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FLEXIBLE CONSTRUCTION OF ERROR FUNCTIONS AND THEIR MINIMIZATION - APPLICATION TO THE CALCULATION OF OPTICAL CONSTANTS OF ABSORBING OR SCATTERING THIN-FILM MATERIALS FROM SPECTROPHOTOMETRIC DATA

机译:误差函数的灵活构造及其最小化-在光度数据中吸收或散射薄膜材料的光学常数的计算中的应用

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摘要

A flexible numerical procedure for the calculation of thin-film optical constants from specular transmittance and reflectance data is presented. The method is based on the minimization of a quadratic error function, which may be adapted to the specifics of the optical behaviour of the given sample (or set of samples), and the given wavenumber region. The flexibility in choosing an appropriate form of the minimized error function, in combination with the powerful minimization method of conjugated gradients, allowed us to investigate the optical constants of very different types of novel thin-film material with a complicated optical loss behaviour. In particular, the results concerning the investigation of single- and two-layer systems based on the following technologically interesting optical thin film materials are presented: (1) amorphous silicon as an example of an anorganic solar cell material; (2) as-deposited (rough) CVD diamond layers as an example of a polycrystalline protective material; (3) hydrogenated amorphous carbon, applicable as a protective long-wavelength IR antireflection coating as well as a spectrally selective solar absorber; (4) copper phthalocyanine layers as an example of a molecular solid, potentially applicable as an organic solar cell material; (5) rare-earth diphthalocyanine layers, interesting because of their electrochromic behaviour. [References: 40]
机译:提出了一种从镜面透射率和反射率数据计算薄膜光学常数的灵活数值程序。该方法基于二次误差函数的最小化,该二次误差函数可以适合于给定样本(或样本集合)的光学行为和给定波数区域的细节。选择最小形式误差函数的适当形式的灵活性以及强大的共轭梯度最小化方法,使我们能够研究具有复杂光损耗特性的新型薄膜材料的光学常数。特别是,提出了有关基于以下技术上有趣的光学薄膜材料的单层和两层系统研究的结果:(1)非晶硅作为无机太阳能电池材料的一个例子; (2)沉积的(粗糙的)CVD金刚石层作为多晶保护材料的实例; (3)氢化的无定形碳,可用作保护性长波长IR抗反射涂层以及光谱选择性太阳能吸收剂; (4)作为分子固体实例的铜酞菁层,潜在地可用作有机太阳能电池材料; (5)稀土二酞菁层,由于其电致变色行为而引起人们的兴趣。 [参考:40]

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