Broadband ELF plasma emission during auroral energization 1. Slow ion acoustic waves

被引:119
作者
Wahlund, JE [5 ]
Eriksson, AI
Holback, B
Boehm, MH
Bonnell, J
Kintner, PM
Seyler, CE
Clemmons, JH
Eliasson, L
Knudsen, DJ
Norqvist, P
Zanetti, LJ
机构
[1] Swedish Inst Space Phys, Uppsala Div, S-75591 Uppsala, Sweden
[2] Lockheed Martin Palo Alto Res Lab, Palo Alto, CA 94304 USA
[3] Cornell Univ, Sch Elect Engn, Ithaca, NY 14853 USA
[4] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
[5] Swedish Inst Space Phys, Kiruna Div, S-98128 Kiruna, Sweden
[6] Univ Calgary, Dept Phys & Astron, Calgary, AB T2N 1N4, Canada
[7] Swedish Inst Space Phys, Umea Div, Umea, Sweden
[8] Johns Hopkins Univ, Appl Phys Lab, Laurel, MD 20723 USA
来源
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS | 1998年 / 103卷 / A3期
关键词
D O I
10.1029/97JA02008
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
High-resolution measurements by the Freja spacecraft of broadband extremely low frequency (BB-ELF) emission from de up to the lower hybrid frequency (a few kHz) are reported from regions of transverse ion acceleration (TAI) and broad-energy suprathermal electron bursts (STEB) occuring in the topside ionospheric auroral regions. A gradual transition of the broadband emission occurs near the local O+ cyclotron frequency (f(O+) approximate to 25 Hz) from predominantly electromagnetic below this frequency to mostly electrostatic above this frequency. The emission below 200 Hz often reach amplitudes up to several hundred mV/m and density perturbations (delta n/n) of tens of %. An improved analysis technique is presented, based on the quantity \delta E/(delta n/n)\ versus frequency and applied to the Freja plasma, wave measurements. The method can be used to infer the dispersion relation for the measured emission as well as give estimates of the thermal plasma temperatures. The BB-ELF emission is found to consist partly of plasma waves with an ion Boltzmann response, which is interpreted as originating from the so-called slow ion acoustic wave mode (SIA). This emission is associated with large bulk ion (O+) temperatures of up to 30 eV and low electron temperatures (1-2 eV) and therefore occurs during conditions when T-e/T-i much less than 1. The BB-ELF emissions also contain other wave mode components, which are not equally easy to identify, even though it is reasonably certain that ion acoustic/cyclotron waves are measured. The ion Boltzmann component is characterized by a dominantly perpendicular polarization with respect to the Earth's magnetic field direction and a small magnetic component with amplitudes around 0.1-1 nT. The ion Boltzmann component dominates the lower-frequency part (30-400 Hz) of the BB-ELF emissions. The BB-ELF emission have often an enhanced spectral power when certain waveform signatures, interpreted as solitary kinetic Alfven waves (SKAW), or when large-amplitude electric fields, possibly related to black aurora, are encountered in regions often associated with large-scale auroral density depletions. A scenario where the SKAW provides the original free energy and via the BB-ELF emission causes intense transverse ion heating (TAI) is suggested.
引用
收藏
页码:4343 / 4375
页数:33
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