首页> 外文期刊>Journal of geophysical research. Planets >A systematic mapping procedure based on the Modified Gaussian Model to characterize magmatic units from olivine/pyroxenes mixtures: Application to the Syrtis Major volcanic shield on Mars
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A systematic mapping procedure based on the Modified Gaussian Model to characterize magmatic units from olivine/pyroxenes mixtures: Application to the Syrtis Major volcanic shield on Mars

机译:基于改进的高斯模型的系统制图程序,用于表征橄榄石/辉石混合物的岩浆单元:在火星上的Syrtis大火山屏蔽中的应用

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Clenet et al. (2011) have developed an adapted version of the Modified Gaussian Model (MGM). The improvements allow the characterization of spectra of olivine-pyroxene(s) mixtures, addressing both modal composition and individual minerals chemical composition. This version of MGM is fully automated and operational with large amounts of hyperspectral imaging data. Two natural cases are considered. The first one is the Sumail massif in the Oman ophiolite (Earth). Based on our approach applied to HyMap data, two contrasted lithologic units are mapped: the mantle, which is harzburgite dominated, and the crust made of gabbros and clinopyroxene-rich cumulates, with spectral variations interpreted in terms of pyroxenes chemical compositions. Once this new MGM mapping approach has been validated on a controlled natural situation, we map the distribution of mafic assemblages across the Syrtis Major volcano on Mars using a visible and near-infrared (VNIR) - short wave infrared (SWIR) Observatoire pour la minéralogie, l'eau, les glaces et l'activité (OMEGA) / Mars Express (MEx) mosaic. Our results are in agreement with previous work but olivine appears to be more abundant than previously estimated in the central part of the volcanic edifice, especially in ternary mafic assemblages (augite, olivine, enstatite). Based on these results, we propose a possible scenario for the igneous (and thus thermal) evolution of the Syrtis Major region. Surrounding terrains have formed first and local heterogeneity can be observed between northern and southern areas of the Noachian crust. We also observe variations in the mineral assemblages within Syrtis Major lavas, which can be interpreted in terms of differentiation from a common parent melt and/or of a progressive evolution of the mantle source composition and temperature.
机译:Clenet等。 (2011年)开发了修改后的高斯模型(MGM)版本。通过改进,可以表征橄榄石-辉石混合物的光谱,从而解决了模态成分和单个矿物化学成分的问题。此版本的MGM是完全自动化的,并且可以处理大量的高光谱成像数据。考虑两种自然情况。第一个是阿曼蛇绿岩(地球)中的Sumail地块。根据我们应用于HyMap数据的方法,绘制了两个对比的岩性单元:地幔(占主导地位的辉石矿床)和由辉长岩和富含斜柏石的富集地壳,并根据辉石的化学成分解释了光谱变化。一旦在受控的自然情况下验证了这种新的米高梅制图方法,我们将使用可见光和近红外(VNIR)-短波红外(SWIR)天文台在火星上的Syrtis大火山上绘制基性岩组合的分布图,l'eau,les glaces et l'activité(OMEGA)/ Mars Express(MEx)马赛克。我们的结果与以前的工作相符,但在火山大厦的中部,橄榄石似乎比以前估计的要丰富,尤其是在三元基性组合(金铁矿,橄榄石,顽辉石)中。基于这些结果,我们提出了Syrtis Major地区火成(并因此而热)演化的可能方案。首先形成了周围的地形,并且可以在诺奇地壳的北部和南部区域之间观察到局部异质性。我们还观察到了Syrtis Major熔岩内的矿物组合的变化,这可以用与普通母体熔体的区别和/或地幔源组成和温度的逐步演化来解释。

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