Construction of a multi-soliton blow-up solution to the semilinear wave equation in one space dimension - Archive ouverte HAL
Article Dans Une Revue Communications on Pure and Applied Mathematics Année : 2013

Construction of a multi-soliton blow-up solution to the semilinear wave equation in one space dimension

Raphaël Côte
  • Fonction : Auteur
  • PersonId : 181956
  • IdHAL : cote
  • IdRef : 119749351
Hatem Zaag

Résumé

We consider the semilinear wave equation with power nonlinearity in one space dimension. Given a blow-up solution with a characteristic point, we refine the blow-up behavior first derived by Merle and Zaag. We also refine the geometry of the blow-up set near a characteristic point, and show that except may be for one exceptional situation, it is never symmetric with the respect to the characteristic point. Then, we show that all blow-up modalities predicted by those authors do occur. More precisely, given any integer $k\ge 2$ and $\zeta_0 \in \m R$, we construct a blow-up solution with a characteristic point $a$, such that the asymptotic behavior of the solution near $(a,T(a))$ shows a decoupled sum of $k$ solitons with alternate signs, whose centers (in the hyperbolic geometry) have $\zeta_0$ as a center of mass, for all times.

Dates et versions

hal-00638545 , version 1 (05-11-2011)

Identifiants

Citer

Raphaël Côte, Hatem Zaag. Construction of a multi-soliton blow-up solution to the semilinear wave equation in one space dimension. Communications on Pure and Applied Mathematics, 2013, 66 (10), pp.1541-1581. ⟨10.1002/cpa.21452⟩. ⟨hal-00638545⟩
128 Consultations
0 Téléchargements

Altmetric

Partager

More