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Latitudinal variation of speed and mass flux in the acceleration region of the solar wind inferred from spectral broadening measurementsSpectral broadening measurements conducted at S-band (13-cm wavelength) during solar minimum conditions in the heliocentric distance range of 3-8 R(sub O) by Mariner 4, Pioneer 10, Mariner 10, Helios 1, Helios 2, and Viking have been combined to reveal a factor of 2.6 reduction in bandwidth from equator to pole. Since spectral broadening bandwidth depends on electron density fluctuation and solar wind speed, and latitudinal variation of the former is available from coherence bandwidth measurements, the remote sensing spectral broadening measurements provide the first determination of the latitudinal variation of solar wind speed in the acceleration region. When combined with electron density measurements deduced from white-light coronagraphs, this result also leads to the first determination of the latitudinal variation of mass flux in the acceleration region. From equator to pole, solar wind speed increases by a factor of 2.2, while mass flux decreases by a factor of 2.3. These results are consistent with measurements of solar wind speed by multi-station intensity scintillation measurements, as well as measurements of mass flux inferred from Lyman alpha observations, both of which pertain to the solar wind beyond 0.5 AU. The spectral broadening observations, therefore, strengthen earlier conclusions about the latitudinal variation of solar wind speed and mass flux, and reinforce current solar coronal models and their implications for solar wind acceleration and solar wind modeling.
Document ID
19950032354
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Woo, Richard
(Jet Propulsion Lab. Cal. Inst. of Tech., Pasadena, CA, United States)
Goldstein, Richard M.
(Jet Propulsion Lab. Cal. Inst. of Tech., Pasadena, CA, United States)
Date Acquired
August 16, 2013
Publication Date
January 15, 1994
Publication Information
Publication: Geophysical Research Letters
Volume: 21
Issue: 2
ISSN: 0094-8276
Subject Category
Solar Physics
Accession Number
95A63953
Distribution Limits
Public
Copyright
Other

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