Graviton multipoint amplitudes for higher-derivative gravity in anti-de Sitter space

We calculate graviton multipoint amplitudes in an anti–de Sitter black brane background for higher-derivative gravity of arbitrary order in numbers of derivatives. The calculations are performed using tensor graviton modes in a particular regime of comparatively high energies and large scattering an...

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Veröffentlicht in:Physical review. D 2018-04, Vol.97 (8), p.086002, Article 086002
Hauptverfasser: Shawa, M. M. W., Medved, A. J. M.
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Sprache:eng
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Zusammenfassung:We calculate graviton multipoint amplitudes in an anti–de Sitter black brane background for higher-derivative gravity of arbitrary order in numbers of derivatives. The calculations are performed using tensor graviton modes in a particular regime of comparatively high energies and large scattering angles. The regime simplifies the calculations but, at the same time, is well suited for translating these results into the language of the dually related gauge theory. After considering theories whose Lagrangians consist of contractions of up to four Riemann tensors, we generalize to even higher-derivative theories by constructing a “basis” for the relevant scattering amplitudes. This construction enables one to find the basic form of the n-point amplitude for arbitrary n and any number of derivatives. Additionally, using the four-point amplitudes for theories whose Lagrangians carry contractions of either three or four Riemann tensors, we reexpress the scattering properties in terms of the Mandelstam variables.
ISSN:2470-0010
2470-0029
DOI:10.1103/PhysRevD.97.086002