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Measuring accurate optical constants of uranium minerals for use in optical modeling of infrared spectra

机译:测量用于红外光谱光学建模的铀矿物精确光学常数

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Knowledge of the bulk optical constants n and k of solids or liquids allows researchers to accurately predict the absorption, reflection, and scattering properties of materials for different physical forms. Indeed, chemically complex materials such as minerals can have an almost limitless variety of morphologies, particle sizes, shapes, and compositions, and the optical properties of such species can be predicted if the optical constants are known. For species such as minerals, there can be additional challenges due to e.g. hydration or dehydration during the course of the optical constants measurement. Here, we describe the protocols to obtain the bulk optical constants n and k of uranium-bearing minerals and ores such as uraninite or autunite. If quality n and k data are at hand, the (infrared) reflectance spectra can be predicted for different particle sizes and morphologies and the modeling results for various scenarios can be derived.
机译:本发明的固体或液体的批量光学常数N和K允许研究人员准确地预测用于不同物理形式的材料的吸收,反射和散射性能。 实际上,诸如矿物质的化学复杂的材料可以具有几乎无限多样种的形态,粒度尺寸,形状和组合物,并且如果已知光学常数,则可以预测这种物种的光学性质。 对于诸如矿物质的物种,由于例如,可能存在额外的挑战。 在光学常数测量过程中的水合或脱水。 在此,我们描述了获得铀光学常数N和K的铀光学常数N和K等方案,例如铀酸盐或自动化物。 如果质量N和K数据在手中,则可以预测(红外)反射谱可以预测不同的粒度和形态,并且可以导出各种场景的建模结果。

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