Asymptotic safety, quantum gravity, and the swampland: a conceptual assessment

We provide a conceptual assessment of some aspects of fundamental quantum field theories of gravity in light of foundational aspects of the swampland program. On the one hand, asymptotically safe quantum gravity may provide a simple and predictive frame-work, thanks to a finite number of relevant pa...

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Autores principales: Basile, Ivano (Autor) , Knorr, Benjamin (Autor) , Platania, Alessia (Autor) , Schiffer, Marc (Autor)
Formato: Article (Journal)
Lenguaje:inglés
Publicado: 2026-02-02
In: SciPost physics
Year: 2026, Volumen: 20, Número: 2, Pages: 1-50
ISSN:2542-4653
DOI:10.21468/SciPostPhys.20.2.027
Acceso en línea:Verlag, lizenzpflichtig, Volltext: https://doi.org/10.21468/SciPostPhys.20.2.027
Verlag, lizenzpflichtig, Volltext: https://scipost.org/10.21468/SciPostPhys.20.2.027
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Notas de Autor:Ivano Basile, Benjamin Knorr, Alessia Platania, and Marc Schiffer
Descripción
Sumario:We provide a conceptual assessment of some aspects of fundamental quantum field theories of gravity in light of foundational aspects of the swampland program. On the one hand, asymptotically safe quantum gravity may provide a simple and predictive frame-work, thanks to a finite number of relevant parameters. On the other hand, a (sub-)set of intertwined swampland conjectures on the consistency of quantum gravity can be argued to be universal via effective field theory considerations. We answer whether some foundational features of these frameworks are compatible. This involves revisiting and refining several arguments (and loopholes) concerning the relation between field-theoretic descriptions of gravity and general swampland ideas. We identify the thermodynamics of black holes, spacetime topology change, and holography as the core aspects of this relation. We draw lessons on the features that a field theoretic description of gravity must (not) have to be consistent with fundamental principles underlying the swampland program, and on the universality of the latter.
Notas:Gesehen am 08.06.2026
Descripción Física:Online Resource
ISSN:2542-4653
DOI:10.21468/SciPostPhys.20.2.027