Gravitational instantons with conformally coupled scalar fields

José Barrientos, Adolfo Cisterna, Cristóbal Corral, Marcelo Oyarzo

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10 Scopus citations

Abstract

We present novel regular Euclidean solutions to General Relativity in presence of Maxwell and conformally coupled scalar fields. In particular, we consider metrics of the Eguchi-Hanson and Taub-NUT families to solve the field equations analytically. The solutions have nontrivial topology labeled by the Hirzebruch signature and Euler characteristic that we compute explicitly. We find that, although the solutions are locally inequivalent with the original (anti-)self-dual Eguchi-Hanson metric, they have the same global properties in the flat limit. We revisit the Taub-NUT solution previously found in the literature, analyze their nuts and bolts structure, and obtain the renormalized Euclidean on-shell action as well as their topological invariants. Additionally, we discuss how the solutions get modified in presence of higher-curvature corrections that respect conformal invariance. In the conformally invariant case, we obtain novel Eguchi-Hanson and Taub-NUT solutions and demonstrate that both Euclidean on-shell action and Noether-Wald charges are finite without any reference to intrinsic boundary counterterms.

Original languageEnglish
Article number110
JournalJournal of High Energy Physics
Volume2022
Issue number5
DOIs
StatePublished - May 2022
Externally publishedYes

Keywords

  • Classical Theories of Gravity
  • Scale and Conformal Symmetries

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