Astron. Astrophys. 332, 795-804 (1998)

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Nonlinear coupling of MHD waves in inhomogeneous steady flows
V.M. Nakariakov 1,
B. Roberts 1 and
K. Murawski 2
1 School of Mathematical and Computational Sciences,
University of St Andrews, St Andrews, Fife KY16 9SS, Scotland, UK
2 WIBiS, Politechnic of Lublin, ul. Nadbystrzycka 40, PL-20
618 Lublin, Poland
Received 1 August 1997 / Accepted 8 December 1997
Abstract
The nonlinear coupling of MHD waves in a cold
( ) compressible plasma with a smoothly
inhomogeneous low-speed steady flow directed along the magnetic field
is considered. The effect is similar to Alfvèn wave phase
mixing in a static, inhomogeneous medium and leads to the production
of steep transversal gradients in the plasma parameters, which
increases dissipation. Transversal gradients in the total pressure,
produced by phase mixing, lead to the secular generation of obliquely
propagating fast magnetosonic waves, at double the frequency and the
wavenumber of the source Alfvén waves. The efficiency of the
generation is defined by the Alfvén wave amplitude and the
transversal spatial scale of the flow inhomogeneity. The secular
growth of density perturbations, connected with fast waves, takes
place for flow speeds that are considerably below the thresholds of
the Kelvin - Helmholtz and negative energy wave instabilities. The
initial stage of the nonlinear generation of the fast waves is
considered analytically and illustrated by numerical simulations.
Key words: MHD
waves
Sun: corona
Send offprint requests to: V.M. Nakariakov
© European Southern Observatory (ESO) 1998
Online publication: March 23, 1998
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