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Ion distributions in the Earth's foreshock region: Hybrid-Vlasov simulations and spacecraft observations

机译:地球近座区的离子分布:Hybrid-Vlasov模拟和航天器观测

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We present the ion distribution functions in the terrestrial foreshock, simulated by the hybrid-Vlasov model called Vlasiator and observed by the THEMIS and Cluster spacecraft. In the hybrid-Vlasov description, the ion distribution function is propagated in up to three spatial and three velocity dimensions and electrons are modelled as a massless charge-neutralising fluid. Vlasiator was used to model self-consistently the terrestrial bow shock and foreshock regions in the ecliptic plane (two spatial, three velocity dimensions). The simulations were run for tens of ion gyroperiods over hundreds of ion inertial lengths. Vlasiator provides, for the first time, a large-scale picture of the ion distribution in the foreshock with a quality comparable to or even better than spacecraft data thanks to the uniform velocity space sampling and the absence of statistical noise. This allows us to study the interaction between the backstreaming ions and the solar wind, which can trigger instabilities leading to waves in the foreshock.
机译:我们介绍了地面前座中的离子分布函数,由Hybrid-Vlasov模型模拟称为Vlasiator,由Themis和Cluster SpaceCraft观察。在Hybrid-Vlasov描述中,离子分布函数在最多三个空间中传播,并且三个速度尺寸和电子被建模为无麻充电中和流体。 Vlasiator用于模拟自我持续的陆地弓形冲击和羽毛面积(两个空间,三个速度尺寸)。在数百个离子惯性长度上运行数百超过数百个离子吡嘧啶的模拟。 Vlasiator是首次提供的,由于均匀的速度空间采样和统计噪声的缺失,具有与空间数据相当的质量或甚至优于航天器数据的大规模图片。这使我们能够研究后游离子和太阳风之间的相互作用,这可以触发导致前座中波浪的不稳定性。

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