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首页> 外文期刊>Earth, planets and space: EPS >Role of the solar wind magnetic field in the interaction of a non-magnetized body with the solar wind: An electromagnetic 2-D particle-in-cell simulation
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Role of the solar wind magnetic field in the interaction of a non-magnetized body with the solar wind: An electromagnetic 2-D particle-in-cell simulation

机译:太阳风磁场在非磁性体与太阳风相互作用中的作用:电磁二维粒子模拟

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摘要

The solar wind interaction with a non-magnetized, electrically non-conducting body is studied using a two- dimensional electromagnetic full particle simulation. The solar wind magnetic field is introduced into the simulation scheme as an initial condition together with the electric field generated by the motion of the solar wind. The solar wind magnetic field controls the direction of the thermal flow of the electrons and causes an asymmetry of the negative charging of the downstream-side surface. The negative charging and the potential drop are largest at the position where the solar wind magnetic field is perpendicular to the surface of the non- magnetized body. In the absence of photoelectrons, the solar wind electrons begin to be expelled by the negative charging at the terminator and then flow away along the field line producing streaks of enhancements of the electron density.
机译:使用二维电磁全粒子模拟研究了太阳风与非磁化,非导电体的相互作用。太阳风磁场与太阳风运动产生的电场一起作为初始条件引入模拟方案。太阳风磁场控制电子的热流方向,并导致下游侧表面的负电荷不对称。在太阳风磁场垂直于非磁化体表面的位置,负电荷和电位降最大。在没有光电子的情况下,太阳风电子开始在端接器处被负电荷排出,然后沿磁力线流走,从而产生增强电子密度的条纹。

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