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首页> 外文期刊>Journal of geophysical research. Planets >How well do we know the polar hydrogen distribution on the Moon?
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How well do we know the polar hydrogen distribution on the Moon?

机译:我们如何了解月球上的极性氢分布?

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摘要

A detailed comparison is made of results from the Lunar Prospector Neutron Spectrometer (LPNS) and the Lunar Exploration Neutron Detector Collimated Sensors for Epithermal Neutrons (LEND CSETN). Using the autocorrelation function and power spectrum of the polar count rate maps produced by these experiments, it is shown that the LEND CSETN has a footprint that is at least as big as would be expected for an omnidirectional detector at an orbital altitude of 50 km. The collimated flux into the field of view of the collimator is negligible. A dip in the count rate in Shoemaker crater is found to be consistent with being a statistical fluctuation superimposed on a significant, larger-scale decrease in the count rate, providing no evidence for high spatial resolution of the LEND CSETN. The maps of lunar polar hydrogen with the highest contrast, i.e., spatial resolution, are those resulting from pixon image reconstructions of the LPNS data. These typically provide weight percentages of water-equivalent hydrogen that are accurate to 30% within the polar craters.
机译:详细的比较是由月球前辈中子光谱仪(LPN)和月球中子中子中子(LEND CSETN)的Lunar Exploration中子探测器准直的传感器进行详细比较。使用这些实验产生的极性计数速率图的自相关函数和功率谱,这表明借贷CSETN具有在50 km的轨道高度下的杂滴检测器的足迹至少与预期的相同。直接进入准直仪视野的准则可以忽略不计。发现鞋匠火山口的计数率的下降与统计波动叠加在计数率的显着,更大尺度下降的统计波动相一致,这没有证据表明借贷CSETN的高空间分辨率没有证据。具有最高对比度的月球极氢的地图,即空间分辨率,是由LPNS数据的Pixon图像重建产生的。这些通常提供重量百分比的水等效氢,这些氢在极地陨石坑内准确至30%。

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