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Ion transport in Titan's upper atmosphere

机译:离子传输在泰坦的大气层

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摘要

Based on a combined Cassini data set including Ion Neutral Mass Spectrometer, Radio Plasma Wave Science, and Magnetometer measurements made during nine close encounters of the Cassini spacecraft with Titan, we investigate the electron (or total ion) distribution in the upper ionosphere of the satellite between 1250 and 1600 km. A comparison of the measured electron distribution with that in diffusive equilibrium suggests global ion escape from Titan with a total ion loss rate of –(1.7 ± 0.4) x 1025 s-1. Significant diurnal variation in ion transport is implied by the data, characterized by ion outflow at the dayside and ion inflow at the nightside, especially below 1400 km. This is interpreted as a result of day-to-night ion transport, with a horizontal transport rate estimated to be –(1.4 ± 0.5) x 1024 s-/. Such an ion flow is likely to be an important source for Titan's nightside ionosphere, as proposed in Cui et al. [2009a].
机译:根据卡西尼号数据集包括离子相结合中性粒子质谱仪无线电等离子体波科学和磁强计测量在卡西尼号的9个近距离接触与泰坦飞船,我们调查电子(或总离子)分布上电离层的卫星在1250年和1600年之间公里。分布的扩散平衡表明全球离子逃离泰坦总离子损失率(1.7±0.4)x 1025 s - 1。显著的日变化在离子运输隐含的数据,以离子外流在阴面的光面和离子流入,尤其是低于1400公里。由于昼夜离子运输,水平运输率估计为(1.4±0.5) x 1024年代/。泰坦的一个重要来源的阴面电离层,提出了崔et al .(2009)。

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