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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Studying Dawn-Dusk Asymmetries of Mercury's Magnetotail UsingMHD-EPIC Simulations
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Studying Dawn-Dusk Asymmetries of Mercury's Magnetotail UsingMHD-EPIC Simulations

机译:使用MHD-EPIC模拟研究Mercury MagnetoTail的Dawn-Dusk不对称

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摘要

MESSENGER has observed a lot of dawn-dusk asymmetries in Mercury's magnetotail, such as the asymmetries of the cross-tail current sheet thickness and the occurrence of flux ropes, dipolarization events, and energetic electron injections. In order to obtain a global pictures of Mercury's magnetotail dynamics and the relationship between these asymmetries, we perform global simulations with the magnetohydrodynamics with embedded particle-in-cell (MHD-EPIC) model, where Mercury's magnetotail region is covered by a PIC code. Our simulations show that the dawnside current sheet is thicker, the plasma density is larger, and the electron pressure is higher than the duskside. Under a strong interplanetary magnetic field driver, the simulated reconnection sites prefer the dawnside.We also found the dipolarization events and the planetward electron jets are moving dawnward while they are moving toward the planet, so that almost all dipolarization events and high-speed plasma flows concentrate in the dawn sector. The simulation results are consistent with MESSENGER observations.
机译:Messenger已经观察到汞的磁船中的许多黎明黄昏不对称,例如横尾电流板厚度的不对称和磁通绳,双极化事件和能量电子注入的不对称。为了获得Mercury的磁靶动力学的全球图片和这些不对称之间的关系,我们使用具有嵌入式粒子 - 细胞(MHD-EPIC)模型的磁性流体动力学进行全局模拟,其中汞的磁盲区域由PIC代码覆盖。我们的模拟表明,垂直电流纸更厚,等离子体密度较大,电子压力高于甜点。在一个强制的行星际磁场驱动器下,模拟的重新连接位点更喜欢垂直。我们还发现了双极化事件,并且平坦的电子射流在移动到行星时移动垂直,使得几乎所有的双极化事件和高速等离子体流动专注于黎明部门。模拟结果与信使观察结果一致。

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