首页> 外文会议>2011 30th URSI General Assembly and Scientific Symposium >Role of the surface charging in the solar wind interaction with a small, non-magnetized, electrically non-conducting body studied in a two-dimensional electromagnetic full particle simulation
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Role of the surface charging in the solar wind interaction with a small, non-magnetized, electrically non-conducting body studied in a two-dimensional electromagnetic full particle simulation

机译:在二维电磁全粒子模拟中研究表面电荷在与小型,非磁化,非导电体的太阳风相互作用中的作用

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摘要

The solar wind interaction with a small, 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 flow of thermal electrons, causing an asymmetry of the negative charging of the downstream side surface. In the absence of the photoelectrons, the solar wind electrons are expelled by the negative charging at the terminator, and behave differently from traditional theory.
机译:使用二维电磁全粒子模拟研究了与小型,非磁化,非导电体的太阳风相互作用。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到仿真方案中。太阳风磁场控制着热电子的流动方向,导致下游侧表面的负电荷不对称。在没有光电子的情况下,太阳风电子在终止子处被负电荷驱除,其行为与传统理论不同。

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