4.2 Review

FAST SOLITONS ON STAR GRAPHS

Journal

REVIEWS IN MATHEMATICAL PHYSICS
Volume 23, Issue 4, Pages 409-451

Publisher

WORLD SCIENTIFIC PUBL CO PTE LTD
DOI: 10.1142/S0129055X11004345

Keywords

Quantum graphs; nonlinear Schrodinger equation; solitary waves

Funding

  1. INDAM-GNFM research project Equazione di Schrodinger non lineare interagente con difetti sulla retta e su grafi
  2. Hausdorff Research Institute for Mathematics

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We define the Schrodinger equation with focusing, cubic nonlinearity on one-vertex graphs. We prove global well-posedness in the energy domain and conservation laws for some self-adjoint boundary conditions at the vertex, i.e. Kirchhoff boundary condition and the so-called delta and d delta' boundary conditions. Moreover, in the same setting, we study the collision of a fast solitary wave with the vertex and we show that it splits in reflected and transmitted components. The outgoing waves preserve a soliton character over a time which depends on the logarithm of the velocity of the ingoing solitary wave. Over the same timescale, the reflection and transmission coefficients of the outgoing waves coincide with the corresponding coefficients of the linear problem. In the analysis of the problem, we follow ideas borrowed from the seminal paper [17] about scattering of fast solitons by a delta interaction on the line, by Holmer, Marzuola and Zworski. The present paper represents an extension of their work to the case of graphs and, as a byproduct, it shows how to extend the analysis of soliton scattering by other point interactions on the line, interpreted as a degenerate graph.

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