Evolution of flux ropes in the magnetotail: A three-dimensional global hybrid simulation
Lu, S.1,2; Lin, Y.3; Lu, Q. M.1; Wang, X. Y.3; Wang, R. S.4; Huang, C.1; Wu, M. Y.1; Wang, S.1
刊名PHYSICS OF PLASMAS
2015-05-01
卷号22期号:5
DOI10.1063/1.4919615
文献子类Article
英文摘要Flux ropes in the Earth's magnetotail are widely believed to play a crucial role in energy transport during substorms and the generation of energetic particles. Previous kinetic simulations are limited to the local-scale regime, and thus cannot be used to study the structure associated with the geomagnetic field and the global-scale evolution of the flux ropes. Here, the evolution of flux ropes in the magnetotail under a steady southward interplanetary magnetic field are studied with a newly developed three-dimensional global hybrid simulation model for dynamics ranging from the ion Larmor radius to the global convection time scales. Magnetic reconnection with multiple X-lines is found to take place in the near-tail current sheet at geocentric solar magneto-spheric distances x = -30R(E) similar to -15R(E) around the equatorial plane (z = 0). The magnetotail reconnection layer is turbulent, with a nonuniform structure and unsteady evolution, and exhibits properties of typical collisionless fast reconnection with the Hall effect. A number of small-scale flux ropes are generated through the multiple X-line reconnection. The diameter of the flux ropes is several R-E, and the spatial scale of the flux ropes in the dawn-dusk direction is on the order of several R-E and does not extend across the entire section of the magnetotail, contrary to previous models and MHD simulation results and showing the importance of the three-dimensional effects. The nonuniform and unsteady multiple X-line reconnection with particle kinetic effects leads to various kinds of flux rope evolution: The small-scale flux ropes propagate earthward or tailward after formation, and eventually merge into the near-Earth region or the mid-/distant-tail plasmoid, respectively. During the propagation, some of the flux ropes can be tilted in the geocentric solar magnetospheric (x, y) plane with respect to the y (dawn-dusk) axis. Coalescence between flux ropes is also observed. At the same time, the evolution of the flux ropes in the multiple X-line reconnection layer can also lead to the acceleration and heating of ions. (C) 2015 AIP Publishing LLC.
WOS关键词INTERPLANETARY MAGNETIC-FIELD ; ISEE 3 OBSERVATIONS ; GUIDE-FIELD ; MAGNETOHYDRODYNAMIC SIMULATION ; COLLISIONLESS RECONNECTION ; ELECTRON ACCELERATION ; GEOTAIL OBSERVATIONS ; EARTHS MAGNETOTAIL ; DIFFUSION REGION ; PLASMA SHEET
WOS研究方向Physics
语种英语
WOS记录号WOS:000355794300052
资助机构973 Program(2012CB825602 ; 973 Program(2012CB825602 ; National Science Foundation of China(41331067 ; National Science Foundation of China(41331067 ; CAS Key Research Program(KZZD-EW-01-4) ; CAS Key Research Program(KZZD-EW-01-4) ; NSF(PH-0903794) ; NSF(PH-0903794) ; 2013CBA01503) ; 2013CBA01503) ; 11235009 ; 11235009 ; 41274124 ; 41274124 ; 41274144 ; 41274144 ; 41121003) ; 41121003) ; 973 Program(2012CB825602 ; 973 Program(2012CB825602 ; National Science Foundation of China(41331067 ; National Science Foundation of China(41331067 ; CAS Key Research Program(KZZD-EW-01-4) ; CAS Key Research Program(KZZD-EW-01-4) ; NSF(PH-0903794) ; NSF(PH-0903794) ; 2013CBA01503) ; 2013CBA01503) ; 11235009 ; 11235009 ; 41274124 ; 41274124 ; 41274144 ; 41274144 ; 41121003) ; 41121003)
内容类型期刊论文
源URL[http://ir.iggcas.ac.cn/handle/132A11/62521]  
专题地质与地球物理研究所_中国科学院地球与行星物理重点实验室
作者单位1.Univ Sci & Technol China, Dept Geophys & Planetary Sci, CAS Key Lab Geospace Environm, Hefei 230026, Peoples R China
2.Chinese Acad Sci, Natl Space Sci Ctr, State Key Lab Space Weather, Beijing, Peoples R China
3.Auburn Univ, Dept Phys, Auburn, AL 36849 USA
4.Chinese Acad Sci, Inst Geol & Geophys, Key Lab Earth & Planetary Phys, Beijing, Peoples R China
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GB/T 7714
Lu, S.,Lin, Y.,Lu, Q. M.,et al. Evolution of flux ropes in the magnetotail: A three-dimensional global hybrid simulation[J]. PHYSICS OF PLASMAS,2015,22(5).
APA Lu, S..,Lin, Y..,Lu, Q. M..,Wang, X. Y..,Wang, R. S..,...&Wang, S..(2015).Evolution of flux ropes in the magnetotail: A three-dimensional global hybrid simulation.PHYSICS OF PLASMAS,22(5).
MLA Lu, S.,et al."Evolution of flux ropes in the magnetotail: A three-dimensional global hybrid simulation".PHYSICS OF PLASMAS 22.5(2015).
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