High order asymptotic expansions of a good–bad–ugly wave equation

A heuristic method to find asymptotic solutions to a system of non-linear wave equations near null infinity is proposed. The non-linearities in this model, dubbed good–bad–ugly, are known to mimic the ones present in the Einstein field equations and we expect to be able to exploit this method to der...

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Bibliographic Details
Published inClassical and quantum gravity Vol. 38; no. 14; pp. 145015 - 145043
Main Authors Duarte, Miguel, Feng, Justin, Gasperín, Edgar, Hilditch, David
Format Journal Article
LanguageEnglish
Published IOP Publishing 22.07.2021
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Summary:A heuristic method to find asymptotic solutions to a system of non-linear wave equations near null infinity is proposed. The non-linearities in this model, dubbed good–bad–ugly, are known to mimic the ones present in the Einstein field equations and we expect to be able to exploit this method to derive an asymptotic expansion for the metric in general relativity close to null infinity that goes beyond first order as performed by Lindblad and Rodnianski for the leading asymptotics. For the good–bad–ugly model, we derive formal expansions in which terms proportional to the logarithm of the radial coordinate appear at every order in the bad field, from the second order onward in the ugly field but never in the good field. The model is generalized to wave operators built from an asymptotically flat metric and it is shown that it admits polyhomogeneous asymptotic solutions. Finally we define stratified null forms, a generalization of standard null forms, which capture the behavior of different types of field, and demonstrate that the addition of such terms to the original system bears no qualitative influence on the type of asymptotic solutions found.
Bibliography:CQG-107951.R1
ISSN:0264-9381
1361-6382
DOI:10.1088/1361-6382/abfed2