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Sputtering of ice grains and icy satellites in Saturn's inner magnetosphere

机译:土星内磁层的冰粒和冰卫星的溅射

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摘要

Icy grains and satellites orbiting in Saturn's magnetosphere are immersed in a plasma that sputters their surfaces. This limits the lifetime of the E-ring grains and ejects neutrals that orbit Saturn until they are ionized and populate its magnetosphere. Here we re-evaluate the sputtering rate of ice in Saturn's inner magnetosphere using the recent Cassini data on the plasma ion density, temperature and composition [Sittler Jr., E.C, et al., 2007a. Ion and neutral sources and sinks within Saturn's inner magnetosphere: Cassini results. Planet. Space Sci. 56, 3-18.] and a recent summary of the relevant sputtering data for ice [Fama, M., Shi, J., Baragiola, R.A., 2008. Sputtering of ice by low-energy ions. Surf. Sci. 602, 156-161.]. Although the energetic (>10 keV) ion component at Saturn is much smaller than was assumed to be the case after Voyager [Jurac, S., Johnson, R.E., Richardson, J.D., Paranicas, C, 2001a. Satellite sputtering in Saturn's magnetosphere. Planet. Space Sci. 49, 319-326; Jurac, S., Johnson, R.E., Richardson, J.D., 2001b. Saturn's E ring and production of the neutral torus. Icarus 149, 384-396.], we show that the sputtering rates are sensitive to the temperature of the thermal plasma and are still robust, so that sputtering likely determines the lifetime of the grains in Saturn's tenuous E-ring.
机译:在土星磁层中运行的冰冷的谷物和人造卫星被浸入等离子体中,该等离子体会溅射它们的表面。这会限制E环晶粒的寿命,并喷射绕土星运行的中性粒子,直到它们被离子化并填充其磁层。在这里,我们使用有关等离子体离子密度,温度和组成的卡西尼号最新数据重新评估了土星内部磁层中冰的溅射速率[Sittler Jr.,E.C,et al。,2007a。土星内部磁层中的离子源和中性源和汇:卡西尼号。行星。太空科学56、3-18。]和有关冰的相关溅射数据的最新摘要[Fama,M.,Shi,J.,Baragiola,R.A.,2008.通过低能离子溅射冰。冲浪。科学602,156-161。]。尽管土星处的高能(> 10 keV)离子组分比旅行者号后的情况要小得多[Jurac,S.,Johnson,R.E.,Richardson,J.D.,Paranicas,C,2001a。土星磁层的卫星溅射。行星。太空科学49,319-326; S.Jurac,R.E。Johnson,J.D。Richardson,2001b。土星的E环和中性圆环的产生。 Icarus 149,384-396。],我们证明溅射速率对热等离子体的温度敏感,并且仍然很坚固,因此溅射很可能决定了土星微弱的E形环中晶粒的寿命。

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