NUT charge weak gravity conjecture from dimensional reduction

We analyze the constraints on four-derivative corrections to 5d Einstein-Maxwell theory from the black hole weak gravity conjecture (WGC). We calculate the leading corrections to the extremal mass of asymptotically flat 5d charged solutions as well as 4d Kaluza-Klein compactifications. The WGC bound...

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Veröffentlicht in:Physical review. D 2021-05, Vol.103 (10), p.1, Article 106011
Hauptverfasser: Cremonini, Sera, Jones, Callum R. T., Liu, James T., McPeak, Brian, Tang, Yuezhang
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Sprache:eng
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Zusammenfassung:We analyze the constraints on four-derivative corrections to 5d Einstein-Maxwell theory from the black hole weak gravity conjecture (WGC). We calculate the leading corrections to the extremal mass of asymptotically flat 5d charged solutions as well as 4d Kaluza-Klein compactifications. The WGC bounds from the latter, interpreted as 4d dyonic black holes, are found to be strictly stronger. As magnetic graviphoton charge lifts to a NUT-like charge in 5d, we argue that the logic of the WGC should apply to these topological charges as well and leads to new constraints on purely gravitational theories.
ISSN:2470-0010
2470-0029
DOI:10.1103/PhysRevD.103.106011