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首页> 外文期刊>Journal of geophysical research. Planets >A Novel Atmospheric Removal Technique for TES Spectra Applied to Olivine and Carbonate-Rich Bedrock in the Nili Fossae Region, Mars
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A Novel Atmospheric Removal Technique for TES Spectra Applied to Olivine and Carbonate-Rich Bedrock in the Nili Fossae Region, Mars

机译:小说大气te的去除技术光谱应用于橄榄石和飞船在尼利•福萨地区的基岩,火星

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摘要

Spectra from the Mars Global Surveyor Thermal Emission Spectrometer (TES) display a combination of features attributable to surface and atmospheric components. In order to fully recognize and interpret surface spectral features, the atmospheric spectral features must be removed through some form of surface-atmosphere separation (SAS). Multiple SAS techniques are available representing a range of complexity and accuracy. A ratio between spectra from a region of interest and a relatively spectrally bland, dusty location is an effective SAS technique, but the resulting ratio spectrum contains spectral features of surface dust (SD) from the dusty location. We exploit the uniform spectral character of SD across Mars to produce dust-removed ratio spectra (DRRS). This simple and robust technique allows TES spectra to be compared directly to laboratory spectra and to Miniature-TES spectra from the Mars Exploration Rovers. Although previous SAS techniques yield atmospherically corrected spectra that can serve this purpose, they are more challenging to implement, retain fewer data points, and are less accurate in some cases. The DRRS technique provides an option that is well suited to both quick-look assessments of TES spectra and in-depth analyses using follow-on spectral modeling techniques. We show that DRRS of olivine-rich bedrock in the Nili Fossae region display spectral features that match olivine with a composition ranging from ~Fo50 to
机译:从火星环球探测器热谱发射光谱仪(te)显示一个组合的特性归因于表面大气的组件。识别和解释表面光谱特性,必须大气光谱特性通过某种形式的被删除surface-atmosphere分离(SAS)。技术代表的是可用的复杂性和准确性。从一个地区的利益和相对幽灵似地乏味,尘土飞扬的位置是有效的SAS技术,但由此产生的光谱比值包含表面灰尘(SD)的光谱特性从尘土飞扬的位置。光谱特征的SD火星dust-removed比值光谱(DRRS)。和健壮的技术允许te光谱实验室光谱,比较直接从火星探索Miniature-TES光谱探测器。气压上光谱,可以纠正这个目的,他们更具有挑战性实现,保留较少的数据点,和更少在某些情况下准确。提供了一个选项,都非常适合快速查看评估测试光谱和深入分析使用后续光谱建模技术。在尼利•福萨地区olivine-rich基石显示匹配橄榄石的光谱特性一篇作文~ Fo50 < Fo90和不等匹配olivine-rich Algonquin-class岩石在古谢夫陨石坑的哥伦比亚山。

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