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Global surface slopes and roughness of the Moon from the Lunar Orbiter Laser Altimeter

机译:月球轨道激光测高仪对月球的总体表面坡度和粗糙度

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The acquisition of new global elevation data from the Lunar Orbiter Laser Altimeter, carried on the Lunar Reconnaissance Orbiter, permits quantification of the surface roughness properties of the Moon at unprecedented scales and resolution. We map lunar surface roughness using a range of parameters: median absolute slope, both directional (along-track) and bidirectional (in two dimensions); median differential slope; and Hurst exponent, over baselines ranging from –17 m to –2.7 km. We find that the lunar highlands and the mare plains show vastly different roughness properties, with subtler variations within mare and highlands. Most of the surface exhibits fractal-like behavior, with a single or two different Hurst exponents over the given baseline range; when a transition exists, it typically occurs near the 1 km baseline, indicating a significant characteristic spatial scale for competing surface processes. The Hurst exponent is high within the lunar highlands, with a median value of 0.95, and lower in the maria (with a median value of 0.76). The median differential slope is a powerful tool for discriminating between roughness units and is useful in characterizing, among other things, the ejecta surrounding large basins, particularly Orientale, as well as the ray systems surrounding young, Copernican-age craters. In addition, it allows a quantitative exploration on mare surfaces of the evolution of surface roughness with age.
机译:在“月球侦察轨道”上进行的“月球轨道激光高度计”新全球高程数据的采集,可以以前所未有的规模和分辨率量化月球的表面粗糙度特性。我们使用一系列参数来映射月球表面粗糙度:中值绝对斜率,方向(沿轨迹)和双向(沿二维);中值斜率和Hurst指数,范围从–17 m到–2.7 km。我们发现,月球高地和母马平原显示出极大不同的粗糙度特性,母马和高地内部微妙的变化。大多数表面表现出类似分形的行为,在给定的基线范围内有一个或两个不同的赫斯特指数。当存在过渡时,它通常发生在基线附近1 km处,这表明竞争性地表过程具有明显的特征空间尺度。赫斯特指数在月球高地内较高,中位数为0.95,而在玛丽亚地区较低(中位数为0.76)。中值微分斜率是区分粗糙度单位的有力工具,除其他功能外,还可用于表征大型盆地(尤其是东方盆地)周围的喷出物,以及哥白尼时代的陨石坑周围的射线系统。此外,它还允许对母马表面进行随年龄变化的表面粗糙度演变的定量探索。

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