期刊文献+

行星际磁云边界层中的磁重联结构 被引量:2

原文传递
导出
摘要 介绍Wind飞船跨越1997年5月15日磁云边界层时的观测分析结果,分析发现,Wind飞船在距地球约190个地球半径处于07:35~08:50UT期间观测到一个磁重联耗散区,主要的磁重联信号包括:(ⅰ)重联反向流在08:10UT附近被观测到,速度分别为≈65和41 km/s,其夹角为≈142°;(ⅱ)Hall磁场被观测到,如x-z平面外的Hall磁场是叠加在约为≈2 nT的称引导场上的-B_y和+B_y,幅度达≈7.0 nT,大约为总磁场的41%;(ⅲ)重联区内Alfven涨落明显增强,特别在前边界(0735 UT)附近可看到慢模性质的界面;(ⅳ)离子在重联层内明显加热,温度快速增大达3倍,电子也加热,但不如离子显著。上述观测表明,磁重联可以发生于行星际空间,这无论对发展磁重联理论还是对行星际物理过程的认识,都将是重要的。
出处 《中国科学(E辑)》 CSCD 北大核心 2004年第3期353-360,共8页 Science in China(Series E)
基金 国家重点基础研究规划(批准号:02000078405) 国家自然科学基金(批准号:49990450 49925412)
  • 相关文献

参考文献58

  • 1魏奉思,胡强,R.Schwenn.行星际空间中的磁重联事件[J].中国科学(E辑),1997,27(4):325-331. 被引量:5
  • 2Priest E R, Folry C R, Heyvaerts J, et al. Nature of the heating mechanism for the diffuse solar corona.Nature, 1998, 393(11): 545-547.
  • 3Wang S, Lee L C. Magnetic Field Reconnection. Anhui: Anhui Education Publisher, 1998.
  • 4Lee L C, The Magnetopause: A tutorial review, in: Physics of Space Plasma(1990). Eds by Chang T, Crew G B, Jarperre J P, eds. Cambridge: Sci Pub Inc, 1991.
  • 5Deng X H, Matsumoto H. Rapid magnetic reconnection in the earth's Magnetosphere generated by whistler waves. Nature, 2001, 410:557-559.
  • 6Φieroset M, Phan T D, Fujimotom. M, et al. In Situ detection of collisionless reconnection in the Earth's magnetotail. Nature, 2001, 416(26): 414-416.
  • 7Shay M A, Drake J E, Rogers B N, et al. The scaling of collisionless, magnetic reconnection for large systems. Geophys Res Lett, 1999, 26:2163-2166.
  • 8Ma Z W, Bhattacharjee A. Hall magnetohydrodynamic reconnection: The geospace environment modeling challenge . J Geophys Res, 2001, 106:3773-3782.
  • 9Hesse M, Birn J, Kuznetsova M. Collisionless magnetic reconnection: Electron processes and transport modeling. J Geophys Res, 2001, 106:3721-3735.
  • 10Pritchett P L, Geospace environment modeling magnetic reconnection challenge: Simulations with a full particle electromagnetic code. J Geophys Res. 2001, 106:3783-3798.

二级参考文献2

共引文献4

同被引文献21

  • 1钟鼎坤,魏奉思,冯学尚,杨昉.New Evidence for Magnetic Reconnection in the Tail of Interplanetary Magnetic Cloud[J].Chinese Physics Letters,2005,22(12):3225-3228. 被引量:7
  • 2Burlaga L F. Interplanetary Megnetohydrodynamics [M]. Oxford: Oxford University Press, 1995.
  • 3Wei Fengsi, Feng Xueshang, Yang Fang, Zhong Dingkun. A new non-pressure-balanced structure in interplanetaryspace: Boundary layers of magnetic clouds [J]. J. Geophys. Res., 2006, 111:3102-3114.
  • 4Zuo P B, Wei F S, Feng X S. Observations of an interplan- etary slow shock associated with magnetic cloud boundary layer [J]. Geophys. Res. Left., 2006, 33:15 107-15 111.
  • 5Wei Fengsi, Liu Rui, Feng Xueshang, et al. Magnetic structures inside boundary layers of magnetic clouds [J]. Geophys. Res. Lett., 2003, 30:2283-2287.
  • 6Zuo P B, Wei F S, Feng X S, et al. The relationship between the magnetic cloud boundary layer and the sub-storm expansion phase [J]. Solar Phys., 2007, 242:167-185.
  • 7Wei Fengsi, Liu Rui, Fan Quanlin, et al. Identification of the magnetic cloud boundary layers [J]. J. Geophys. Res., 2003, 108:1263-1284.
  • 8Edward J Smith. The heliospheric current sheet [J]. J. Geophys. Rest, 2001, 106(A8):15 819-15 831.
  • 9Wei Fengsi, Dryer Murray. Propagation of solar flare- associated interplanetary shock waves in the heliospheric meridional plane [J]. Solar Phys., 1991, 13:1:373-394.
  • 10Feng Xueshang, Wei Fengsi, Dryer Murray. Advances in solar connection with transient interplanetary phenom-ena [R] //Proceedings of the Third SOLTIP Symposium 1996 in Beijing, China. Beijing: International Academic Publishers, 1998. 439.

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部