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Surface charging of thick porous water ice layers relevant for ion sputtering experiments

机译:与离子溅射实验有关的厚多孔水冰层的表面带电

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We use a laboratory facility to study the sputtering properties of centimeter-thick porous water ice subjected to the bombardment of ions and electrons to better understand the formation of exospheres of the icy moons of Jupiter. Our ice samples are as similar as possible to the expected moon surfaces but surface charging of the samples during ion irradiation may distort the experimental results. We therefore monitor the time scales for charging and discharging of the samples when subjected to a beam of ions. These experiments allow us to derive an electric conductivity of deep porous ice layers. The results imply that electron irradiation and sputtering play a non-negligible role for certain plasma conditions at the icy moons of Jupiter. The observed ion sputtering yields from our ice-samples are similar to previous experiments where compact ice films were sputtered off a micro-balance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:我们使用实验室设施来研究受到离子和电子轰击的厘米级厚的多孔水冰的溅射特性,以便更好地了解木星冰月的外球层的形成。我们的冰样品尽可能与预期的月球表面相似,但在离子辐照期间样品的表面电荷可能会使实验结果失真。因此,我们会在遇到离子束时监控样品充电和放电的时间范围。这些实验使我们能够得出深层多孔冰层的电导率。结果表明,在木星冰冷的卫星上,对于某些等离子体条件,电子辐照和溅射起着不可忽略的作用。从我们的冰样品中观察到的离子溅射产量与以前的实验相似,在该实验中,从微天平上溅射出致密的冰膜。 (C)2016 Elsevier Ltd.保留所有权利。

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