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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Influence of neutral components on relative band contrasts in reflectance spectra of intimate mixtures: Implications for remote sensing 1. Nonlinear mixing modeling
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Influence of neutral components on relative band contrasts in reflectance spectra of intimate mixtures: Implications for remote sensing 1. Nonlinear mixing modeling

机译:中性成分对紧密混合物反射光谱中相对谱带对比度的影响:对遥感的影响1.非线性混合建模

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The application of nonlinear mixing to model the band contrasts in the spectra of intimate mixtures shows that not only the band contrasts but also their ratios are sensitive to the presence of a featureless end-member. The ratio of the contrast of the weaker band to that of the deeper one decreases with increasing content of neutral phase. The degree and the rate of decline depend on a number of factors. When a neutral phase is present, the use of relative band contrasts to estimate the relative abundance of end-members results in systematic errors. In multicomponent mixtures the presence of a spectrally neutral phase leads to the underestimation of the component with the weaker band. The larger the difference in contrasts between the bands, the larger is the systematic error. Additional factors increasing the error are an opacity of the neutral phase, a large difference in brightness between the neutral phase and the components with absorption features, a decreased grain size of the neutral component relative to those of the other constituents, and decreased grain sizes of all end-members. The use of calibrations for binary mineral mixtures to analyze the spectra of multicomponent surfaces should be subject to errors when opaque constituents are present. Some variations in relative band contrast of asteroid spectra due to variable contents and/or particle size of opaques may be misinterpreted as variations in silicate modal abundance.
机译:非线性混合在紧密混合物光谱中对能带对比度建模的应用表明,不仅能带对比度而且它们的比率都对无特征末端成员的存在敏感。随着中性相含量的增加,较弱带的对比度与较深带的对比度之比减小。下降的程度和速度取决于许多因素。当存在中性相时,使用相对谱带对比度来估计末端成员的相对丰度会导致系统误差。在多组分混合物中,光谱中性相的存在会导致谱带较弱的组分被低估。频段之间的对比度差异越大,系统误差越大。增加误差的其他因素包括中性相的不透明性,中性相与具有吸收特征的组分之间的亮度差异大,中性组分相对于其他成分的粒径减小,以及所有最终成员。当存在不透明的成分时,使用二元矿物混合物的标定来分析多组分表面的光谱应该会出错。由于不透明物的含量和/或粒径变化而导致的小行星光谱相对能带对比度的某些变化可能会被误解为硅酸盐模态丰度的变化。

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