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Dust deposition on the decks of the Mars Exploration Rovers: 10 years of dust dynamics on the Panoramic Camera calibration targets

机译:火星探测漫游者甲板上的尘埃沉积:全景相机校准目标上的尘埃动力学长达10年

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AbstractThe Panoramic Cameras on NASA's Mars Exploration Rovers have each returned more than 17,000 images of their calibration targets. In order to make optimal use of this data set for reflectance calibration, a correction must be made for the presence of air fall dust. Here we present an improved dust correction procedure based on a two-layer scattering model, and we present a dust reflectance spectrum derived from long-term trends in the data set. The dust on the calibration targets appears brighter than dusty areas of the Martian surface. We derive detailed histories of dust deposition and removal revealing two distinct environments: At the Spirit landing site, half the year is dominated by dust deposition, the other half by dust removal, usually in brief, sharp events. At the Opportunity landing site the Martian year has a semiannual dust cycle with dust removal happening gradually throughout two removal seasons each year. The highest observed optical depth of settled dust on the calibration target is 1.5 on Spirit and 1.1 on Opportunity (at 601 nm). We derive a general prediction for dust deposition rates of 0.004 ± 0.001 in units of surface optical depth deposited per sol (Martian solar day) per unit atmospheric optical depth. We expect this procedure to lead to improved reflectance-calibration of the Panoramic Camera data set. In addition, it is easily adapted to similar data sets from other missions in order to deliver improved reflectance calibration as well as data on dust reflectance properties and deposition and removal history.
机译:摘要美国国家航空航天局(NASA)的火星探测漫游者(Mars Exploration Rovers)上的全景相机各自返回了超过17,000张校准目标图像。为了最优化地使用此数据集进行反射率校准,必须对存在的空气掉落粉尘进行校正。在这里,我们提出了一种基于两层散射模型的改进的灰尘校正程序,并且提出了从数据集中的长期趋势中得出的灰尘反射光谱。校准目标上的灰尘看起来比火星表面的灰尘区域更亮。我们得出了详细的尘埃沉积和清除历史,揭示了两种截然不同的环境:在Spirit降落地点,一年中的一半时间是尘埃沉积,另一半是通过尘埃清除,通常是短暂而尖锐的事件。在机会着陆点,火星年度有半年一次的除尘周期,每年在两个除尘季节中,除尘逐渐发生。在校准目标上观察到的最高沉降尘埃光学深度在Spirit上为1.5,在Opportunity上为1.1(在601 nm)。我们以每单位大气光学深度每溶胶沉积的表面光学深度(火星日)为单位,得出粉尘沉积速率为0.004±0.001的一般预测。我们希望此过程可以改善全景相机数据集的反射率校准。此外,它很容易适应其他任务的类似数据集,以提供改进的反射率校准以及关于粉尘反射率特性以及沉积和清除历史的数据。

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