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On the Inverse Scattering Method for Integrable PDEs on a Star Graph
Authors
A. Boutet De Monvel
A. Doikou
+35 more
A.R. Aguirre
A.S. Fokas
A.S. Fokas
A.S. Fokas
C.S. Gardner
D. Faddeev Ludwig
D. Noja
E. Corrigan
E.K. Sklyanin
F. Demontis
I. Habibullin
I.T. Habibullin
J. Avan
J. Avan
J. Holmer
J.F. Gomes
M. Mintchev
M.J. Ablowitz
M.J. Ablowitz
P. Bowcock
P. Deift
P. Deift
P.D. Lax
R. Adami
R.F. Bibkaev
R.R. Rosales
S. Albeverio
S. Manakov
V. Caudrelier
V. Caudrelier
V. Caudrelier
V. Kostrykin
V.E. Zakharov
V.O. Tarasov
Vincent Caudrelier
Publication date
6 May 2015
Publisher
'Springer Science and Business Media LLC'
Doi
View
on
arXiv
Abstract
© 2015, Springer-Verlag Berlin Heidelberg. We present a framework to solve the open problem of formulating the inverse scattering method (ISM) for an integrable PDE on a star-graph. The idea is to map the problem on the graph to a matrix initial-boundary value (IBV) problem and then to extend the unified method of Fokas to such a matrix IBV problem. The nonlinear Schrödinger equation is chosen to illustrate the method. The framework unifies all previously known examples which are recovered as particular cases. The case of general Robin conditions at the vertex is discussed: the notion of linearizable initial-boundary conditions is introduced. For such conditions, the method is shown to be as efficient as the ISM on the full-line
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