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Simulations of the photoelectron sheath and dust levitation on the lunar surface

机译:月球表面光电子鞘和悬浮尘埃的模拟

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摘要

The lunar surface represents a complex plasma environment due to the presence of solar ultraviolet (UV) radiation, the incoming solar wind flux and charged, levitated micron- and sub-micron sized dust particles. Photoemission due to solar UV radiation dominates the charging environment, creating a photoelectron sheath above the lunar surface. To further investigate the dusty plasma environment on the surface of the Moon, a onedimensional particle-in-cell (PIC) code has been designed specifically for the lunar surface. The code has been validated against analytic solutions for photoelectron sheaths with basic photoelectron energy distributions. Simulations have focused on the role of the emitted photoelectron energy distribution and solar UV variability in determining the sheath profile. Additionally, the charging and levitation of test dust particles in the photoelectron sheath are studied. Limits on the maximum size and height of levitated dust grains are also presented.
机译:由于存在太阳紫外线(UV)辐射,入射的太阳风通量以及带电的悬浮的微米级和亚微米级灰尘颗粒,因此月球表面代表了复杂的等离子体环境。太阳紫外线辐射引起的光发射支配着充电环境,在月球表面上方形成了一个光电子鞘。为了进一步研究月球表面上尘土飞扬的等离子体环境,专门为月球表面设计了一个一维单元内粒子(PIC)代码。该代码已针对具有基本光电子能量分布的光电子鞘层的解析解进行了验证。模拟已集中在确定护套轮廓方面,所发射的光电子能量分布和太阳紫外线变化的作用。此外,还研究了光电子鞘中测试粉尘颗粒的充电和悬浮。还提出了悬浮颗粒最大尺寸和高度的限制。

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