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Stability and bifurcation of quasiparallel Alfven solitonsThe inverse scattering transformation (IST) is used to study the one-parameter and two-parameter soliton families of the derivative nonlinear Schroedinger (DNLS) equation. The two-parameter soliton family is determined by the discrete complex eigenvalue spectrum of the Kaup-Newell scattering problem and the one-parameter soliton family corresponds to the discrete real eigenvalue spectrum. The structure of the IST is exploited to discuss the existence of discrete real eigenvalues and to prove their structural stability to perturbations of the initial conditions. Also, though the two-parameter soliton is structurally stable in general, it is shown that a perturbation of the initial conditions may change the two-parameter soliton into a degenerate soliton which, in turn, is structurally unstable. This degenerate, or double pole, soliton may bifurcate due to a perturbation of the initial conditions into a pair of one-parameter solitons. If the initial profile is on compact support, then this pair of one-parameter solitons must be compressive and rarefactive respectively. Finally, the Gelfand-Levitan equations appropriate for the double pole soliton are solved.
Document ID
19920069950
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Hamilton, R. L.
(California, University Los Angeles, United States)
Kennel, C. F.
(California, University Santa Barbara, United States)
Mjolhus, E.
(Tromso, University Norway)
Date Acquired
August 15, 2013
Publication Date
September 1, 1992
Publication Information
Publication: Physica Scripta
Volume: 46
Issue: 3 Se
ISSN: 0031-8949
Subject Category
Plasma Physics
Accession Number
92A52574
Funding Number(s)
CONTRACT_GRANT: NSF PHY-89-04035
CONTRACT_GRANT: NAGW-1624
Distribution Limits
Public
Copyright
Other

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