首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Analysis of terrestrial and Martian volcanic compositions using thermal emission spectroscopy - 2. Application to Martian surface spectra from the Mars Global Surveyor Thermal Emission Spectrometer
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Analysis of terrestrial and Martian volcanic compositions using thermal emission spectroscopy - 2. Application to Martian surface spectra from the Mars Global Surveyor Thermal Emission Spectrometer

机译:使用热发射光谱法分析陆地和火星的火山成分-2.火星全球测量师热发射光谱仪在火星表面光谱中的应用

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Atmospherically corrected thermal infrared spectra of large regions of the Martian surface from the Mars Global Surveyor Thermal Emission Spectrometer (MGS TES) previously have been interpreted to represent two general spectral classes. One class represents a basalt to basaltic andesite composition, and the other class represents a basaltic andesite to andesite composition. We have performed new linear deconvolutions of the two Martian surface type spectra with an end-member set tailored to represent volcanic rock types. Our preparatory study of laboratory spectra of terrestrial volcanic rocks (acquired at 2 cm sampling), convolved to TES spectral sampling (10 cm(-1)), shows little degradation in deconvolution results when compared to results acquired using the higher spectral resolution data, indicating that the deconvolution technique is valid for analyzing data at TES resolution. Our spectral fits to the Martian data agree well with previous models and do not exhibit any notable deviations from the Martian spectra that would indicate the absence of any significant end-members in our model. Modal mineralogies obtained with these new spectral fits also compare favorably (within the previously stated uncertainties) to prior results. The newly derived modal mineralogjes are used with new and traditional classification schemes for volcanic igneous rocks (introduced in a companion paper [Wyatt er al., this issue]) to classify the Martian compositions. Our results substantiate the previously proposed hypothesis that these two spectral classes on the Martian surface represent volcanic compositions with distinguishable differences in silica content ranging from basalt to andesite. [References: 46]
机译:从火星全球测量员热发射光谱仪(MGS TES)上获得的火星表面大区域的经大气校正的热红外光谱先前已被解释为代表两种通用光谱类别。一类代表玄武岩到玄武岩的组成,另一类代表玄武岩到安山岩的组成。我们已经对两个火星表面类型谱进行了新的线性反褶积处理,并为代表火山岩类型量身定制了端部构件。我们对陆地火山岩实验室光谱(在2 cm采样时采集)的实验室研究,与TES光谱采样(10 cm(-1))进行了卷积,与使用更高光谱分辨率数据获得的结果相比,解卷积结果几乎没有降级,表示解卷积技术对于以TES分辨率分析数据有效。我们对火星数据的光谱拟合与以前的模型非常吻合,并且与火星光谱没有任何明显的偏差,这表明我们的模型中没有任何重要的末端成员。通过这些新的光谱拟合获得的模态矿物学也可以很好地(在上述不确定性范围内)与先前的结果进行比较。新推导的模态矿物与新的和传统的火山岩火成岩分类方案一起使用(在同行论文中引入[Wyatt等人,本期])对火星成分进行分类。我们的结果证实了先前提出的假设,即火星表面上的这两个光谱类别代表了火山岩成分,其二氧化硅含量从玄武岩到安山岩具有明显的差异。 [参考:46]

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