Global existence of high-frequency solutions to a semi-linear wave equation with a null structure

Author:

Touati Arthur1

Affiliation:

1. Centre de Mathématiques Laurent Schwartz, Ecole Polytechnique, Route de Saclay, 91120 Palaiseau, France

Abstract

We study the propagation of a compactly supported high-frequency wave through a semi-linear wave equation with a null structure. We prove that the self-interaction of the wave creates harmonics which remain close to the light-cone in the evolution. By defining a well-chosen ansatz, we describe precisely those harmonics. Moreover, by applying the vector field method to the equation for the remainder in the ansatz, we prove that the solution exists globally. The interaction between the dispersive decay of waves and their high-frequency behaviour is the main difficulty, and the latter is not compensated by smallness of the initial data, allowing us to consider the high-frequency limit where the wavelength tends to 0.

Publisher

IOS Press

Subject

General Mathematics

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5. Y. Choquet-Bruhat, General Relativity and the Einstein Equations, Oxford Mathematical Monographs, Oxford University Press, Oxford, 2009.

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