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Solar-wind protons and heavy ions sputtering of lunar surface materials

机译:月面材料的太阳风质子和重离子溅射

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Lunar surface materials are exposed to ~1 keV/amu solar-wind protons and heavy ions on almost continuous basis. As the lunar surface consists of mostly oxides, these materials suffer, in principle, both kinetic and potential sputtering due to the actions of the solar-wind ions. Sputtering is an important mechanism affecting the composition of both the lunar surface and its tenuous exosphere. While the contribution of kinetic sputtering to the changes in the composition of the surface layer of these oxides is well understood and modeled, the role and implications of potential sputtering remain unclear. As new potential-sputtering data from multi-charged ions impacting lunar regolith simulants are becoming available from Oak Ridge National Laboratory's MIRF, we examine the role and possible implications of potential sputtering of Lunar KREEP soil. Using a non-equilibrium model we demonstrate that solar-wind heavy ions' induced sputtering is critical in establishing the timescale of the overall solar-wind sputtering process of the lunar surface. We also show that potential sputtering leads to a more pronounced and significant differentiation between depleted and enriched surface elements. We briefly discuss the impacts of enhanced sputtering on the composition of the regolith and the exosphere, as well as of solar-wind sputtering as a source of hydrogen and water on the moon.
机译:月球表面材料几乎连续地暴露于〜1 keV / amu太阳风质子和重离子下。由于月球表面主要由氧化物组成,因此这些材料原则上会由于太阳风离子的作用而遭受动力学溅射和电位溅射的影响。溅射是影响月球表面及其脆弱的外层大气组成的重要机制。虽然已经很好地理解和建模了动态溅射对这些氧化物表面层组成的变化的贡献,但潜在溅射的作用和含义仍不清楚。随着可从橡树岭国家实验室的MIRF获得影响月球重稀土模拟物的多电荷离子的新势能溅射数据,我们研究了月球KREEP土壤潜在溅射的作用和可能的含义。使用非平衡模型,我们证明了太阳风重离子的诱导溅射对于确定月球表面整个太阳风溅射过程的时间尺度至关重要。我们还表明,潜在的溅射导致贫化和富化表面元素之间的差异更加明显和显着。我们简要地讨论了增强溅射对稀土和外气层组成的影响,以及太阳风溅射作为月球上氢和水的来源的影响。

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