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Cometary ion instabilities in the solar wind

机译:太阳风中的彗星离子不稳定性

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We review some of the processes that characterize the interaction of the solar wind with newborn cometary ions. Instabilities generated by the typical ring-beam velocity-space configuration of the pickup ions in the solar wind frame are studied by means of one- and two-dimensional hybrid numerical simulations. In agreement with previous studies, we find that instabilities generated by the cometary ions play an important role in shaping the properties of the plasma. The resulting ion distributions are in good agreement with observations, showing the presence of energy shells in velocity space. Bi-spherical shells for the heavy oxygen ions are also observed in the late phase of the simulations. Moreover, we also investigate some new aspects of the dynamics, such as the generation of turbulent cascade from the initial spectra of unstable waves, and the related heating and back reaction of the solar wind plasma. We also consider the case of initial non-gyrotropic pick-up ion distributions, and we focus on the polarization of the associated waves, suggesting that linear polarization can be a signature of this configuration, possibly observed by the Rosetta spacecraft in orbit around comet 67P/CG. Crown Copyright (C) 2015 Published by Elsevier Ltd. All rights reserved.
机译:我们回顾了一些表征太阳风与新生彗星离子相互作用的过程。通过一维和二维混合数值模拟研究了由典型的环束速度空间构型的太阳离子在太阳风框架中产生的不稳定性。与先前的研究一致,我们发现彗星离子产生的不稳定性在塑造等离子体的性质中起着重要作用。所得的离子分布与观测结果非常吻合,表明速度空间中存在能量壳。在模拟的后期还观察到了重氧离子的双球形壳。此外,我们还研究了动力学的一些新方面,例如从不稳定波的初始光谱中产生湍流级联,以及太阳风等离子体的相关加热和逆反应。我们还考虑了初始非回旋吸收离子分布的情况,并且我们关注于相关波的极化,这表明线性极化可能是这种配置的标志,这可能是由罗塞塔号航天器在彗星67P附近的轨道上观察到的/ CG。 Crown版权所有(C)2015,由Elsevier Ltd.发行。保留所有权利。

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