Low and Midlatitude Ionospheric Plasma Density Irregularities and Their Effects on Geomagnetic Field

被引:24
|
作者
Yokoyama, Tatsuhiro [1 ]
Stolle, Claudia [2 ]
机构
[1] Natl Inst Informat & Commun Technol, 4-2-1 Nukui Kitamachi, Koganei, Tokyo 1848795, Japan
[2] Deutsch GeoForschungsZentrum, D-14473 Potsdam, Germany
关键词
Ionosphere; Equatorial plasma bubble; MSTID; Geomagnetic field; Diamagnetic effect; Field-aligned current; EQUATORIAL-SPREAD-F; SPORADIC-E EXPERIMENT; MU RADAR; CONJUGATE OBSERVATIONS; CHAMP SATELLITE; MAGNETIC-FIELD; PEDERSEN CONDUCTIVITY; ELECTROSTATIC FIELDS; TOPSIDE IONOSPHERE; CURRENT SYSTEMS;
D O I
10.1007/s11214-016-0295-7
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Earth's magnetic field results from various internal and external sources. The electric currents in the ionosphere are major external sources of the magnetic field in the daytime. High-resolution magnetometers onboard low-Earth-orbit satellites such as CHAMP and Swarm can detect small-scale currents in the nighttime ionosphere, where plasma density gradients often become unstable and form irregular density structures. The magnetic field variations caused by the ionospheric irregularities are comparable to that of the lithospheric contribution. Two phenomena in the nighttime ionosphere that contribute to the magnetic field variation are presented: equatorial plasma bubble (EPB) and medium-scale traveling ionospheric disturbance (MSTID). EPB is formed by the generalized Rayleigh-Taylor instability over the dip equator and grows nonlinearly to as high as 2000 km apex altitude. It is characterized by deep plasma density depletions along magnetic flux tubes, where the diamagnetic effect produced by a pressure-gradient-driven current enhances the main field intensity. MSTID is a few hundred kilometer-scale disturbance in the midlatitude ionosphere generated by the coupled electrodynamics between the ionospheric and regions. The field-aligned currents associated with EPBs and MSTIDs also have significant signatures in the magnetic field perpendicular to the main field direction. The empirical discovery of the variations in the magnetic field due to plasma irregularities has motivated the inclusion of electrodynamics in the physical modeling of these irregularities. Through an effective comparison between the model results and observations, the physical process involved has been largely understood. The prediction of magnetic signatures due to plasma irregularities has been advanced by modeling studies, and will be helpful in interpreting magnetic field observations from satellites.
引用
收藏
页码:495 / 519
页数:25
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