首页> 外文期刊>Advances in space research >Background and pickup ion velocity distribution dynamics in Titan's plasma environment: 3D hybrid simulation and comparison with CAPS T9 observations
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Background and pickup ion velocity distribution dynamics in Titan's plasma environment: 3D hybrid simulation and comparison with CAPS T9 observations

机译:泰坦等离子体环境中背景离子和拾取离子速度分布的动力学:3D混合模拟以及与CAPS T9观测值的比较

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In this report we discuss the ion velocity distribution dynamics from the 3D hybrid simulation. In our model the background, pickup, and ionospheric ions are considered as a particles, whereas the electrons are described as a fluid. Inhomogeneous photoionization, electron-impact ionization and charge exchange are included in our model. We also take into account the collisions between the ions and neutrals. The current simulation shows that mass loading by pickup ions H~+,H_2~+, CH_4~+ and N_2~+ is stronger than in the previous simulations when O+ ions are introduced into the background plasma. In our hybrid simulations we use Chamberlain profiles for the atmospheric components. We also include a simple ionosphere model with average mass M = 28 amu ions that were generated inside the ionosphere. The moon is considered as a weakly conducting body. Special attention will be paid to comparing the simulated pickup ion velocity distribution with CAPS T9 observations. Our simulation shows an asymmetry of the ion density distribution and the magnetic field, including the formation of the Alfven wing-like structures. The simulation also shows that the ring-like velocity distribution for pickup ions relaxes to a Maxwellian core and a shell-like halo.
机译:在本报告中,我们讨论了来自3D混合仿真的离子速度分布动力学。在我们的模型中,背景离子,拾取离子和电离层离子被视为粒子,而电子被描述为流体。我们的模型中包括不均匀的光电离,电子碰撞电离和电荷交换。我们还考虑了离子与中性离子之间的碰撞。当前的模拟显示,当将O +离子引入背景等离子体时,吸收离子H〜+,H_2〜+,CH_4〜+和N_2〜+的质量负载要强于先前的模拟。在我们的混合模拟中,我们将张伯伦剖面用于大气成分。我们还包括一个简单的电离层模型,电离层内部产生的平均质量M = 28 amu离子。月亮被认为是弱导电体。将特别注意将模拟的拾取离子速度分布与CAPS T9观测值进行比较。我们的模拟显示了离子密度分布和磁场的不对称性,包括Alfven翼状结构的形成。模拟还表明,拾取离子的环状速度分布松弛到麦克斯韦核和壳状光晕。

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