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DOI | 10.1029/96JA00513 |
High-latitude ionospheric electrodynamics as determined by the assimilative mapping of ionospheric electrodynamics procedure for the conjunctive SUNDIAL ATLAS 1 GEM period of March 28-29, 1992 | |
Lu, G; Emery, BA; Rodger, AS; Lester, M; Taylor, JR; Evans, DS; Ruohoniemi, JM; Denig, WF; delaBeaujardiere, O; Frahm, RA; Winningham, JD; Chenette, DL | |
通讯作者 | Lu, G |
来源期刊 | JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS
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ISSN | 0148-0227 |
出版年 | 1996 |
卷号 | 101期号:A12页码:26697-26718 |
英文摘要 | During the conjunctive SUNDIAL/ATLAS 1/GEM campaign period of March 28-29, 1992, a set of comprehensive data has been collected both from space and from ground. The assimilative mapping of ionospheric electrodynamics (AMIE) procedure is used to derive the large-scale high-latitude ionospheric conductivity, convection, arid other related quantities, by combining the various data sets. The period was characterized by several moderate substorm activities. Variations of different ionospheric electrodynamic fields are examined for one substorm interval. The cross-polar-cap potential drop, Joule heating, and field-aligned current are all enhanced during the expansion phase of substorms. The most dramatic changes of these fields are found to be associated with the development of the substorm electrojet in the post midnight region. Variations of global electrodynamic quantities for this 2-day period have revealed a good correlation with the auroral electrojet (AE) index. In this study we have calculated the AE index from ground magnetic perturbations observed by 63 stations located between 55 degrees and 76 degrees magnetic latitudes north and south, which is larger than the standard AE index by about 28% on the average over these 2 days. Different energy dissipation channels have also been estimated. On the average over the 2 days, the total globally integrated Joule heating rate is about 102 GW and the total globally integrated amoral energy precipitation rate is about 52 GW. Using an empirical formula, the ring current energy injection rate is estimated to be 125 GW for a decay time of 3.5 hours, and 85 GW for a decay time of 20 hours. We also find an energy-coupling efficiency of 3% between the solar wind and the magnetosphere for a southward interplanetary magnetic field (IMF) condition. |
类型 | Article |
语种 | 英语 |
国家 | ENGLAND ; USA |
收录类别 | SCI-E |
WOS记录号 | WOS:A1996VW42300002 |
WOS关键词 | WESTWARD TRAVELING SURGE ; INCOHERENT-SCATTER RADAR ; ENERGY INJECTION RATE ; EXOS-D SATELLITE ; GEOMAGNETIC STORM ; SOLAR-WIND ; PARTICLE-PRECIPITATION ; LOCALIZED OBSERVATIONS ; AURORAL IONOSPHERE ; SUBSTORM EXPANSION |
WOS类目 | Astronomy & Astrophysics |
WOS研究方向 | Astronomy & Astrophysics |
资源类型 | 期刊论文 |
条目标识符 | http://119.78.100.177/qdio/handle/2XILL650/133103 |
作者单位 | (1)BRITISH ANTARCTIC SURVEY, CAMBRIDGE CB3 0ET, ENGLAND;(2)UNIV LEICESTER, DEPT PHYS & ASTRON, LEICESTER LE1 7RH, LEICS, ENGLAND;(3)NOAA, SPACE ENVIRONM LAB, BOULDER, CO 80303 USA;(4)JOHNS HOPKINS UNIV, APPL PHYS LAB, LAUREL, MD USA;(5)NATL SCI FDN, ARLINGTON, VA 22230 USA;(6)PHILLIPS LAB, BEDFORD, MA USA;(7)SW RES INST, SAN ANTONIO, TX USA;(8)LOCKHEED PALO ALTO RES LABS, PALO ALTO, CA 94304 USA |
推荐引用方式 GB/T 7714 | Lu, G,Emery, BA,Rodger, AS,et al. High-latitude ionospheric electrodynamics as determined by the assimilative mapping of ionospheric electrodynamics procedure for the conjunctive SUNDIAL ATLAS 1 GEM period of March 28-29, 1992[J],1996,101(A12):26697-26718. |
APA | Lu, G.,Emery, BA.,Rodger, AS.,Lester, M.,Taylor, JR.,...&Chenette, DL.(1996).High-latitude ionospheric electrodynamics as determined by the assimilative mapping of ionospheric electrodynamics procedure for the conjunctive SUNDIAL ATLAS 1 GEM period of March 28-29, 1992.JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS,101(A12),26697-26718. |
MLA | Lu, G,et al."High-latitude ionospheric electrodynamics as determined by the assimilative mapping of ionospheric electrodynamics procedure for the conjunctive SUNDIAL ATLAS 1 GEM period of March 28-29, 1992".JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS 101.A12(1996):26697-26718. |
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