2003 Volume 20 Issue 4
Article Contents

FAN Quan-Lin(范全林), WEI Feng-Si(魏奉思), FENG Xue-Shang(冯学尚). 2003: Start-Time of Magnetic Reconnection in Interplanetary Space, Chinese Physics Letters, 20(4): 537-540.
Citation: FAN Quan-Lin(范全林), WEI Feng-Si(魏奉思), FENG Xue-Shang(冯学尚). 2003: Start-Time of Magnetic Reconnection in Interplanetary Space, Chinese Physics Letters, 20(4): 537-540.

Start-Time of Magnetic Reconnection in Interplanetary Space

  • Available Online: 30/04/2003
  • Fund Project: the National Natural Science Foundation of China under Grant Nos 40104006, 49925412, and 49990450
  • Start-time of magnetic reconnection under typical interplanetary parameters has been numerically simulated by using the two-dimensional compressible magnetohydrodynamic equations with a third-order compact upwind scheme. Magnetic reconnection would occur near the interplanetary current sheet impacted by a plasmoid.Its initiation is associated with the interplanetary plasma parameter β and the momentum of the plasmoid.The higher the β value is, the faster the reconnection takes place. Meanwhile the reconnection occurs earlier with increasing the plasmoid momentum, and increasing driving velocity is more effective in initializing the reconnection than that of the plasma density when the other factors are kept to be the same. The evolution of the reconnection with the heliocentric distance is also investigated.
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Start-Time of Magnetic Reconnection in Interplanetary Space

Abstract: Start-time of magnetic reconnection under typical interplanetary parameters has been numerically simulated by using the two-dimensional compressible magnetohydrodynamic equations with a third-order compact upwind scheme. Magnetic reconnection would occur near the interplanetary current sheet impacted by a plasmoid.Its initiation is associated with the interplanetary plasma parameter β and the momentum of the plasmoid.The higher the β value is, the faster the reconnection takes place. Meanwhile the reconnection occurs earlier with increasing the plasmoid momentum, and increasing driving velocity is more effective in initializing the reconnection than that of the plasma density when the other factors are kept to be the same. The evolution of the reconnection with the heliocentric distance is also investigated.

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