Characteristics of Coronal Alfvén Waves Deduced from Helios Faraday Rotation Measurements

被引:0
|
作者
V. E. Andreev
A. I. Efimov
L. N. Samoznaev
I. V. Chashei
M. K. Bird
机构
[1] Institute for Radio Engineering and Electronics,
[2] Russian Academy of Sciences,undefined
[3] Lebedev Physics Institute,undefined
[4] Russian Academy of Sciences,undefined
[5] Radioastronomisches Institut,undefined
[6] Universität Bonn,undefined
来源
Solar Physics | 1997年 / 176卷
关键词
Solar Wind; Spectral Index; Helios; Heliocentric Distance; Coronal Plasma;
D O I
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中图分类号
学科分类号
摘要
A statistical study of Faraday rotation fluctuations (FRF) has been performed using polarization angle data of S-band (f = 2.3 GHz) radio spacecraft signals. The measurements were recorded during the recurring superior conjunctions of the Helios probes, during which the solar proximate point of the radio ray path reached heliocentric distances between 3 and 34 R⊙. The most commonly found temporal FRF spectra are power laws with an average spectral index ∼1.5 over the frequency range from 1 mHz < v < 10 mHz. The FRF variance decreases with heliocentric distance, the falloff exponent being ∼8 for R < 6 R⊙ and ∼3 for distances 8 < R < 6 R < 16 R⊙. The results are interpreted under the assumption that the FRF are produced by Alfvén waves propagating in the coronal plasma. For the applicable range of heliocentric distances it is shown that Alfvén waves are in a regime of free propagation and probably transfer much of their energy to the kinetic energy of the solar wind. The spatial power spectrum of magnetic field fluctuations is inferred to be strongly anisotropic, the irregularities extending along the background magnetic field with axial ratios of the order of 10.
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页码:387 / 402
页数:15
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