Abstract
The interaction of fast magnetoacoustic (FMA) waves in a plasma with particle concentration nt∼ni∼1 cm−3 is studied with allowance for Alfven modes, which simulates turbulence. Equations that describe three-wave interaction of FMAs are derived and a method is indicated for constructing some stationary structures that form in the spatial synchronism of interacting FMA waves. The applicability of the inverse scattering problem method to the problem of the interaction of FMA waves in a turbulent plasma is discussed.
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