Published January 1, 1979 | Version v1
Journal article

Role of O-type neutral lines in magnetic merging during substorms and solar flares

Creators

  • 1. Planetary Magnetospheres Branch, Laboratory for Extraterrestrial Physics, NASA/Goddard Space Flight Center, Greenbelt, Maryland 20771

Description

Observational evidence suggests that magnetospheric substorms may be associated with the formation of a pair of neutral points or lines in the geomagnetic plasma sheet, containing an X-type point (or line) and an O-type one. While magnetic merging theory has concentrated almost entirely on X-type neutral configurations (points, lines, or sheets), here the role of O-type configurations is examined, with special attention to three points: (1) How does the X-O configuration extend in three dimensions To this end, an analytical model of the configuration was derived, useful for visualizing the geometry and for numerical treatment of plasma flows in it, (2) What modifications are needed in the M H D condition E=v x B near the O-type line, where it tends to make v grow without limit By analyzing equations of motion for charged particles near an O-type neutral line and their solutions in limiting cases, it was found that at a certain distance from the neutral line the mean particle motion became decoupled from that of magnetic field lines (which obeys the MHD condition). The decoupling distance depended on initial conditions in momentum space, suggesting that the MHD approximation which averages out such conditions may not suffice for describing plasma dynamics near the neutral line. Similar problems arise with merging flows near X-type neutral lines, and although the treatment there is more diffiting form of an X-ult and requires more approximations, it appears that the same qualitative conclusions apply there as well. (3) What is the role of O-type neutral lines in particle acceleration It was found that after inflowing particles are decoupled from the field line motion, they go over to a mode of runaway acceleration along the neutral line. This process is much more efficient along an O-type line than along an X-type line, and it is concluded that if merging occurs at an X-O pair, two particle populations may be expected

Additional details

Publishing Information

Journal Title
J. Geophys. Res.
Journal Volume
84
Journal Issue
A1
Series
J. Geophys. Res.
Journal Page Range
63-71
ISSN
0022-1406

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
10472894
Subject category
S58: GEOSCIENCES;
Descriptors DEI
EARTH MAGNETOSPHERE; MAGNETIC BAYS; MAGNETIC FIELD CONFIGURATIONS; PLASMA ACCELERATION; PLASMA DRIFT; SOLAR FLARES
Descriptors DEC
ACCELERATION; EARTH ATMOSPHERE; SOLAR ACTIVITY