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Radio interferometer measurements of turbulence in the inner solar windMeasurements can be made of Very Long Baseline Interferometer (VLBI) phase scintillations due to plasma turbulence in the solar corona and solar wind. These measurements provide information on the spectrum and intensity of density fluctuations with scale sizes of a few hundred to several thousand kilometers. If we model the spatial power spectrum of the density fluctuations as P(sub delta n)(q) = C(sup 2)(sub N) q(sup -alpha), where q is the spatial wavenumber, these observations yield both alpha and the path-integrated value of C(sup 2)(sub N). The recently completed Very Long Baseline Array (VLBA) is capable of making such measurements over the heliocentric distance range from a few solar radii to 60 solar radii and beyond. This permits the determination with the same technique and instrument of the radial evolution of turbulent characteristics, as well as their dependence on solar wind transients, sector structure, etc. In this paper we present measurements of 13 sources observed at a wide range of solar elongations, and at different times. These observations show that the coefficient C(sup 2(sub N), depends on heliocentric distance as approximately C(sup 2)(sub N) varies as (R/Solar Radius)(sup -3.7). The radio derived power spectral characteristics are in agreement with in situ measurements by the Helios spacecraft for regions of slow solar wind, but fast solar wind does not have large enough density fluctuations to account for the magnitude of the observed scintillations. The observed radial dependence is consistent with a WKB-type evolution of the turbulence with heliocentric distance. Our data also show indication of turbulence enhancement associated with solar wind transients.
Document ID
19960021297
Acquisition Source
Jet Propulsion Laboratory
Document Type
Conference Paper
Authors
Spangler, S. R.
(Iowa Univ. Iowa City, IA United States)
Sakurai, T.
(Iowa Univ. Iowa City, IA United States)
Coles, William A.
(California Univ. San Diego, CA United States)
Grall, R. R.
(California Univ. San Diego, CA United States)
Harmon, J. K.
(Arecibo Ionospheric Observatory Arecibo, Puerto Rico)
Date Acquired
August 17, 2013
Publication Date
June 30, 1995
Subject Category
Solar Physics
Accession Number
96N24693
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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