The long-term evolution of large-amplitude Alfvén waves propagating in the solar wind is investigated by performing two-dimensional MHD simulations within the expanding box model. The linear and nonlinear phases of the parametric decay instability are studied for both circularly polarized waves in parallel propagation and for arc-polarized waves in oblique propagation. The non-monochromatic case is also considered. In the oblique case, the direct excitation of daughter modes transverse to the local background field is found for the first time in an expanding environment, and this transverse cascade seems to be favored for monochromatic mother waves. The expansion effect reduces the instability growth rate, and it can even suppress its onset for the lowest frequency modes considered here, possibly explaining the persistence of these outgoing waves in the solar wind.

Parametric decay of parallel and oblique Alfvén waves in the expanding solar wind / Del Zanna, L.; Matteini, L.; Landi, S.; Verdini, A.; Velli, M.. - In: JOURNAL OF PLASMA PHYSICS. - ISSN 0022-3778. - ELETTRONICO. - 81:(2015), pp. 0-0. [10.1017/S0022377814000579]

Parametric decay of parallel and oblique Alfvén waves in the expanding solar wind

DEL ZANNA, LUCA;MATTEINI, LORENZO;LANDI, SIMONE;VERDINI, ANDREA;VELLI, MARCO
2015

Abstract

The long-term evolution of large-amplitude Alfvén waves propagating in the solar wind is investigated by performing two-dimensional MHD simulations within the expanding box model. The linear and nonlinear phases of the parametric decay instability are studied for both circularly polarized waves in parallel propagation and for arc-polarized waves in oblique propagation. The non-monochromatic case is also considered. In the oblique case, the direct excitation of daughter modes transverse to the local background field is found for the first time in an expanding environment, and this transverse cascade seems to be favored for monochromatic mother waves. The expansion effect reduces the instability growth rate, and it can even suppress its onset for the lowest frequency modes considered here, possibly explaining the persistence of these outgoing waves in the solar wind.
2015
81
0
0
Del Zanna, L.; Matteini, L.; Landi, S.; Verdini, A.; Velli, M.
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/911137
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