Computer Science
Scientific paper
Apr 1986
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1986ssrv...43..329f&link_type=abstract
Space Science Reviews (ISSN 0038-6308), vol. 43, April 1986, p. 329-381.
Computer Science
69
Heliosphere, Interstellar Matter, Magnetohydrodynamic Stability, Plasma Diffusion, Plasma Dynamics, Solar Wind, Electrical Resistivity, Gas Transport, Hydrodynamic Equations, Magnetic Field Reconnection, Particle Diffusion, Solar Cycles, Space Plasmas, Transport Properties
Scientific paper
In the present reconsideration of heliopause models in view of the possibility of plasma mixing between the solar wind and the ambient ionized component of the local interstellar medium (LISM), attention is given to a novel approach to the case of tangential magnetic fields at the heliopause in which a continuous change of the plasma properties within an extended boundary layer is given by a complete set of two-fluid plasma equations. By analogy with the case of planetary atmospheres, it is demonstrated that for LISM magnetic fields of the order of 10 to the -6th G or larger the field reconnection processes may also play an important role in heliopause plasma mixing. A series of observational implications for the expected plasma mixing at the heliopause is discussed.
Fahr Hans Jörg
Grzedzielski Stanislav
Macek W.
Neutsch Wolfram
Ratkiewicz-Landowska R.
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