Nonlinear Gravitational Waves: Their Form and Effects

A gravitational wave must be nonlinear to be able to transport its own source, that is, energy and momentum. A physical gravitational wave, therefore, cannot be represented by a solution to a linear wave equation. Relying on this property, the second-order solution describing such physical waves is...

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Veröffentlicht in:International journal of theoretical physics 2010-03, Vol.49 (3), p.549-563
Hauptverfasser: Aldrovandi, R., Pereira, J. G., da Rocha, R., Vu, K. H.
Format: Artikel
Sprache:eng
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Zusammenfassung:A gravitational wave must be nonlinear to be able to transport its own source, that is, energy and momentum. A physical gravitational wave, therefore, cannot be represented by a solution to a linear wave equation. Relying on this property, the second-order solution describing such physical waves is obtained. The effects they produce on free particles are found to consist of nonlinear oscillations along the direction of propagation.
ISSN:0020-7748
1572-9575
DOI:10.1007/s10773-009-0236-2