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Complexities of gamma-ray line intensities from the lunar surface

机译:月球表面伽玛射线强度的复杂性

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Assuming different abundances of the Apollo lunar soil samples and the average spectrum of galactic cosmic ray protons, energy spectra of neutrons and gamma rays and emission rates of gamma-ray lines from major elements have been estimated by using the reviewed Monte Carlo simulation library Geant4 and nuclear data. Previously, such libraries were not able to reproduce gamma-ray lines properly for the planetary application. Results clearly show that the emission rate of gamma rays heavily depends not only on the chemical abundance but also neutron flux within the lunar subsurface. While the intensities of gamma-ray lines are mostly proportional to elemental abundances, the intensity per unit elemental abundance can vary. Such a complex correlation is attributed to the change in neutron flux within the lunar subsurface and petrological restriction of elemental variation.
机译:假设阿波罗月球土壤样品的丰度和银河宇宙射线质子的平均光谱的丰度不同,则使用审查过的蒙特卡洛模拟库Geant4和来估算中子和γ射线的能量谱以及主要元素的γ射线线的发射率。核数据。以前,此类库无法为行星应用正确地再现伽玛射线。结果清楚地表明,伽玛射线的发射速率不仅在很大程度上取决于化学物质的丰度,而且还取决于月球表面下的中子通量。尽管伽马射线线的强度主要与元素丰度成正比,但每单位元素丰度的强度却可以变化。这种复杂的相关性归因于月球地下内中子通量的变化以及元素变化的岩石学限制。

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