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Propagation of large amplitude Alfven waves in the solar wind neutral sheetAnalysis of solar wind fluctuation data show that the correlation between velocity and magnetic field fluctuations decreases when going farther away from the Sun. This decorrelation can be attributed either to the time evolution of the fluctuations, carried away by the solar wind, or to the interaction between the solar wind neutral sheet and Alfven waves. To check this second hypothesis we have numerically studied the propagation of Alfven waves in the solar wind neutral sheet. The initial conditions have been set up in order to guarantee B(exp 2) = const, so that the following numerical evolution is only due to the inhomogeneity in the background magnetic field. The analysis of the results shows that compressive structures are formed, mainly in the neutral sheet where they have been identified as pressure balanced structures, i.e., tangential discontinuities. Fast perturbations, which are also produced, have a tendency to leave the simulation domain, propagating also perpendicularly to the mean magnetic field. For this reason the level of fast perturbations is always smaller with respect to the previously cited plasma balanced structures, which are slow mode perturbations. A comparison between the numerical results and some particular observational issues is also presented.
Document ID
19960021410
Acquisition Source
Jet Propulsion Laboratory
Document Type
Conference Paper
Authors
Malara, F.
(Calabria Univ. Arcavacta di Rende, Italy)
Primavera, L.
(Calabria Univ. Arcavacta di Rende, Italy)
Veltri, P.
(Calabria Univ. Arcavacta di Rende, Italy)
Date Acquired
August 17, 2013
Publication Date
June 30, 1995
Subject Category
Solar Physics
Accession Number
96N24806
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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