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Dependence of lunar mare microwave brightness temperature on FeO and TiO2

机译:月球微波亮度温度对FeO和TiO2的依赖性

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The Moon is known to radiate microwave emission as a grey body, depending on its surface emissivity and physical temperature. Measurement of lunar brightness temperature can reveal surface properties and thermal behavior, as it is dependent on the surficial material. To understand possible correlation and compare the results obtained from the measured data with those obtained from the theory, we have used the amount of lunar surface material (iron and titanium), measured by the lunar prospector mission, as a first quantity in the analysis. The lunar brightness temperature, measured by a microwave radiometer on Change-1 mission, serves as the other variable in our analysis. Global maps of lunar surface materials have been generated from the lunar prospector data sets and presented in this article. A conditional coefficient, representing the correlation between microwave brightness temperature and lunar surface material has been defined, and its analysis has been carried out for the lunar Mare region. Results show that major contribution in brightness temperature comes from lunar regolith density driven component, while a small contribution is made by the lunar surface material. The correlation results disagree with the existing theoretical model used to describe the brightness temperature dependence with surface material. In this connection, a modified permittivity model is suggested for the Mare region, based on our correlation analysis. (C) 2016 Elsevier Ltd. All rights reserved.
机译:已知月球会以微波辐射灰色物体,这取决于它的表面发射率和物理温度。月球亮度温度的测量可以揭示表面特性和热行为,因为它取决于表面材料。为了了解可能的相关性并将从实测数据中获得的结果与从理论中获得的结果进行比较,我们使用了由探月者任务测得的月球表面物质(铁和钛)的量作为分析中的第一量。在Change-1任务中,由微波辐射计测量的月球亮度温度是我们分析中的另一个变量。从月球探矿者数据集生成了月球表面物质的全球地图,并在本文中进行了介绍。已经定义了代表微波亮度温度和月球表面物质之间相关性的条件系数,并且已经对月球母马区域进行了分析。结果表明,亮度温度的主要贡献来自月球重石密度驱动成分,而月球表面物质贡献很小。相关结果与用于描述表面温度对亮度温度依赖性的现有理论模型不一致。在这方面,根据我们的相关分析,建议对马雷地区提出一种修正的介电常数模型。 (C)2016 Elsevier Ltd.保留所有权利。

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