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尘埃颗粒从土星的 D 环落入其赤道上层大气。

Dust grains fall from Saturn's D-ring into its equatorial upper atmosphere.

机构信息

Johns Hopkins University Applied Physics Laboratory, Laurel, MD, USA.

Department of Physics, University of Maryland, College Park, MD, USA.

出版信息

Science. 2018 Oct 5;362(6410). doi: 10.1126/science.aat2236.

Abstract

The sizes of Saturn's ring particles range from meters (boulders) to nanometers (dust). Determination of the rings' ages depends on loss processes, including the transport of dust into Saturn's atmosphere. During the Grand Finale orbits of the Cassini spacecraft, its instruments measured tiny dust grains that compose the innermost D-ring of Saturn. The nanometer-sized dust experiences collisions with exospheric (upper atmosphere) hydrogen and molecular hydrogen, which forces it to fall from the ring into the ionosphere and lower atmosphere. We used the Magnetospheric Imaging Instrument to detect and characterize this dust transport and also found that diffusion dominates above and near the altitude of peak ionospheric density. This mechanism results in a mass deposition into the equatorial atmosphere of ~5 kilograms per second, constraining the age of the D-ring.

摘要

土星环颗粒的大小范围从米级(巨石)到纳米级(尘埃)。环的年龄的确定取决于损耗过程,包括尘埃向土星大气层的传输。在卡西尼号太空船的“大终章”轨道中,其仪器测量了构成土星最内层 D 环的微小尘埃颗粒。这些纳米级大小的尘埃与行星际空间(上层大气)的氢和分子氢发生碰撞,这迫使它们从环中落入电离层和低层大气。我们使用磁层成像仪来探测和描述这种尘埃传输,还发现扩散在峰值电离层密度以上和附近占主导地位。这种机制导致每秒有约 5 公斤的物质沉积到赤道大气中,从而限制了 D 环的年龄。

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