SUBSTORM INTENSIFICATIONS AND FIELD LINE RESONANCES IN THE NIGHTSIDE MAGNETOSPHERE

被引:209
作者
SAMSON, JC
WALLIS, DD
HUGHES, TJ
CREUTZBERG, F
RUOHONIEMI, JM
GREENWALD, RA
机构
[1] NATL RES COUNCIL CANADA, HERZBERG INST ASTROPHYS, OTTAWA K1A 0R6, ONTARIO, CANADA
[2] JOHNS HOPKINS UNIV, APPL PHYS LAB, LAUREL, MD 20723 USA
关键词
D O I
10.1029/91JA03156
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Magnetometer and HF radar data often indicate the presence of magnetohydrodynamic, field line resonances in the nightside magnetosphere. These resonances have frequencies of about 1.3, 1.9, 2.6, and 3.4 mHz and are due to cavity modes or waveguide modes which form between the magnetopause and turning points on dipolelike magnetic shells. Energy from these cavity modes tunnels to the field line resonances which are seen in the F region by the HF radar and on the ground by the magnetometers. The presence of these field line resonances gives us an excellent diagnostic tool for determining the position of the mechanism leading to the energetic electrons and field-aligned currents associated with substorm intensifications and auroral brightening. Using data from the Canadian CANOPUS array of magnetometers, meridian scanning photometers, riometers, and bistatic auroral radars and data from the Johns Hopkins University/Applied Physics Laboratory HF radar at Goose Bay in Canada, we have identified a number of intervals in which substorm intensifications occurred during times when field line resonances existed in the region of the magnetosphere where the intensification occurred. In the events that we have analyzed in detail, the ionospheric signatures of the substorm intensification began equatorward (earthward) of existing field line resonances. These observations give very strong evidence indicating that at least one component of the substorm mechanism must be active very close to the Earth, probably on dipolelike field lines in regions with trapped and quasi-trapped energetic particles. Furthermore, the auroral intensifications started near the position of one of the equatorward resonances, indicating that the field line resonances may play a role in triggering or producing the substorm intensifications. One possible scenario is mode conversion to kinetic Alfven waves in the resonance.
引用
收藏
页码:8495 / 8518
页数:24
相关论文
共 62 条
[11]   INTERPLANETARY MAGNETIC FIELD AND AURORAL ZONES [J].
DUNGEY, JW .
PHYSICAL REVIEW LETTERS, 1961, 6 (02) :47-&
[12]   THE BOUNDARY-LAYERS AS THE PRIMARY TRANSPORT REGIONS OF THE EARTHS MAGNETOTAIL [J].
EASTMAN, TE ;
FRANK, LA ;
HUANG, CY .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1985, 90 (NA10) :9541-&
[13]   MAPPING USING THE TSYGANENKO LONG MAGNETOSPHERIC MODEL AND ITS RELATIONSHIP TO VIKING AURORAL IMAGES [J].
ELPHINSTONE, RD ;
HEARN, D ;
MURPHREE, JS ;
COGGER, LL .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1991, 96 (A2) :1467-1480
[14]  
GALPERIN YI, 1991, AURORAL PHYSICS, P207
[15]   KINETIC ALFVEN WAVES ON AURORAL FIELD LINES [J].
GOERTZ, CK .
PLANETARY AND SPACE SCIENCE, 1984, 32 (11) :1387-1392
[16]   THE THERMAL CATASTROPHE MODEL OF SUBSTORMS [J].
GOERTZ, CK ;
SMITH, RA .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1989, 94 (A6) :6581-6596
[17]   AN HF PHASED-ARRAY RADAR FOR STUDYING SMALL-SCALE STRUCTURE IN THE HIGH-LATITUDE IONOSPHERE [J].
GREENWALD, RA ;
BAKER, KB ;
HUTCHINS, RA ;
HANUISE, C .
RADIO SCIENCE, 1985, 20 (01) :63-79
[18]   STARE - NEW RADAR AURORAL BACKSCATTER EXPERIMENT IN NORTHERN SCANDINAVIA [J].
GREENWALD, RA ;
WEISS, W ;
NIELSEN, E ;
THOMSON, NR .
RADIO SCIENCE, 1978, 13 (06) :1021-1039
[19]   ENERGETICS OF LONG PERIOD RESONANT HYDROMAGNETIC-WAVES [J].
GREENWALD, RA ;
WALKER, ADM .
GEOPHYSICAL RESEARCH LETTERS, 1980, 7 (10) :745-748
[20]   SPATIAL RELATIONSHIP BETWEEN LARGE ASPECT ANGLE VHF RADIO AURORA AND 557.7-NM EMISSIONS - EVIDENCE FOR REFRACTION [J].
HALL, G ;
MOORCROFT, DR ;
COGGER, LL ;
ANDRE, D .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1990, 95 (A9) :15281-15288