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Strength of the H2O near-infrared absorption bands in hydrated minerals: Effects of measurement geometry

机译:水合矿物质中H2O近红外吸收带的强度:测量几何形状的影响

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摘要

Quantitative effects of incidence and emergence angles variations on the 1.9- and 3-μm H2O bands are experimentally investigated for two hydrated minerals: smectite and altered volcanic tuff. Near-infrared bidirectional reflectance spectra are measured with various incidence and emergence angles leading to phase angles varying between 10° and 140°. We observe a decrease of both band strengths when phase angle increases. The relationship between band strength and phase angle depends on both the absorption intensity, i.e., strong or weak band, and the particle size of the material. We compare experimental results with radiative transfer modeling with optical constants of a smectite. Numerical models can reproduce the changes in band strength with incidence and emergence angles if the value of the single particle scattering anisotropy varies over the absorption band. We attribute this wavelength-dependent scattering effect to enhanced surface scattering within the absorption bands compared to volume scattering outside the bands. Relative variations of band strength induced by measurement geometry variations can reach tens of percent at high phase angle. Therefore these effects have to be taken into account when mapping spectral parameters on a planetary surface or comparing spectral parameters between two surfaces if measurement geometries are subject to large variations.
机译:对于两种水合矿物质:绿土和变质火山凝灰岩,通过实验研究了入射角和出射角变化对1.9和3μmH2O带的定量影响。使用各种入射角和出射角(导致相角在10°和140°之间变化)测量近红外双向反射光谱。当相角增加时,我们观察到两个带强度都减小。带强度和相角之间的关系取决于吸收强度,即强或弱带,以及材料的粒径。我们将实验结果与具有绿土光学常数的辐射转移模型进行比较。如果单个粒子散射各向异性的值在吸收带上发生变化,则数值模型可以再现带强度随入射角和出射角的变化。我们将这种与波长有关的散射效应归因于吸收带内的表面散射增强,而不是吸收带外的体积散射。由测量几何形状变化引起的带强度的相对变化在高相位角下可以达到百分之几十。因此,如果测量几何形状存在较大差异,则在将光谱参数映射到行星表面或比较两个表面之间的光谱参数时,必须考虑这些影响。

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