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Linear and non linear study of a possible mechanism for the generation of stellar radio bursts: The Synchrotron Maser Instability

Published online by Cambridge University Press:  27 September 2017

P. Louarn
Affiliation:
CNET/CRPE, 38-40 Rue du General Leclerc, 92131 ISSY LES MOULINEAUX
D. Le Queau
Affiliation:
CNET/CRPE, 38-40 Rue du General Leclerc, 92131 ISSY LES MOULINEAUX
A. Roux
Affiliation:
CNET/CRPE, 38-40 Rue du General Leclerc, 92131 ISSY LES MOULINEAUX

Abstract

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The emission mechanism studied here, the synchrotron maser instability is based on a gyroresonance of highly energetic electrons. Compared to the cyclotron maser, this mechanism has the great advantage to be a direct amplification process even if the ratio ωpc is not very small; a situation relevant to stellar flares.The high efficiency of the process can be confirm by the non linear study of its saturation.

Type
Session III: Theory
Copyright
Copyright © Kluwer 1989

References

Chanmugan, G., Dulk, G.A.: 1982, Astrophy. J., 57, 285.Google Scholar
Louarn, et al: 1986. Astron. Astrophys., 165, 211 Google Scholar
Louarn, et al: 1987, Solar Phys., 111, 201.Google Scholar
Melrose, D.B., Dulk, G.A.:1982, Astrophys. J., 259, 844 CrossRefGoogle Scholar
Sharma, R.R., Vlahos, L.:1984. Astrophy J., 280, 405 Google Scholar
Wu, C.S., 1985, Space Sciences Rev., 41, 215 Google Scholar