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Mediation of the solar wind termination shock by non-thermal ions

机译:非热离子介导的太阳风终止冲击

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Broad regions on both sides of the solar wind termination shock are populated by high intensities of non-thermal ions and electrons. The pre-shock particles in the solar wind have been measured by the spacecraft Voyager 1 (refs 1-5) and Voyager 2 (refs 3, 6). The post-shock particles in the heliosheath have also been measured by Voyager 1 (refs 3-5). It was not clear, however, what effect these particles might have on the physics of the shock transition until Voyager 2 crossed the shock on 31 August-1 September 2007 (refs 7-9). Unlike Voyager 1, Voyager 2 is making plasma measurements7. Data from the plasma7 and magnetic field8 instruments on Voyager 2 indicate that non-thermal ion distributions probably have key roles in mediating dynamical processes at the termination shock and in the heliosheath. Here we report that intensities of low-energy ions measured by Voyager 2 produce non-thermal partial ion pressures in the heliosheath that are comparable to (or exceed) both the thermal plasma pressures and the scalar magnetic field pressures. We conclude that these ions are the > 0.028 MeV portion of the non-thermal ion distribution that determines the termination shock structure8 and the acceleration of which extracts a large fraction of bulk-flow kinetic energy from the incident solar wind.
机译:高强度的非热离子和电子填充了太阳风终止冲击两侧的广阔区域。太阳风中的预震粒子是由旅行者1号(参考1-5)和旅行者2号(参考3、6)测量的。旅行者1号还测量了日鞘中的震后颗粒(参考文献3-5)。但是,直到旅行者2号于2007年8月31日至9月1日越过电击之前,尚不清楚这些粒子对电击过渡的物理影响(参考文献7-9)。与旅行者1不同,旅行者2正在进行等离子体测量7。 Voyager 2上的等离子7和磁场8仪器的数据表明,非热离子分布可能在介导终止激波和日鞘的动力学过程中起关键作用。在这里我们报告说,旅行者2测得的低能离子强度在日鞘中产生了非热的分离子压力,该分压可与(或超过)热等离子体压力和标量磁场压力相比较。我们得出的结论是,这些离子是非热离子分布中大于0.028 MeV的部分,它决定了终止激波结构8,其加速度从入射太阳风中提取了很大一部分体积流动能。

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