Birth of Inflationary Universes via Wineglass Wormholes and their No-Boundary Relatives

Fuente: arXiv
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Main Authors: Lavrelashvili, George, Lehners, Jean-Luc
Format: Preprint
Published: 2026
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author Lavrelashvili, George
Lehners, Jean-Luc
author_facet Lavrelashvili, George
Lehners, Jean-Luc
contents We study Euclidean wineglass wormholes, which mediate the nucleation of inflationary spacetimes from an existing spacetime with asymptotically flat or Anti-de Sitter regions. These wormholes are distinguished by the presence of a local maximum of the scale factor, which allows the analytically continued Lorentzian spacetime to expand after materialization. We present explicit numerical wormhole solutions supported either by an axionic field or a magnetic gauge field, in both cases in conjunction with a self-interacting scalar field. More exotic solutions, with multiple extrema of the scale factor, are also described. As we discovered recently, in the limit of small axionic or magnetic charge, wineglass wormhole solutions split into two separate geometries, one being the background spacetime and the other a disconnected no-boundary instanton. We study the associated topology changing transition in detail and provide an extensive discussion of both the properties and puzzles exhibited by this common family of wineglass/no-boundary instantons.
format Preprint
id arxiv_https___arxiv_org_abs_2605_10548
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Birth of Inflationary Universes via Wineglass Wormholes and their No-Boundary Relatives
Lavrelashvili, George
Lehners, Jean-Luc
High Energy Physics - Theory
General Relativity and Quantum Cosmology
We study Euclidean wineglass wormholes, which mediate the nucleation of inflationary spacetimes from an existing spacetime with asymptotically flat or Anti-de Sitter regions. These wormholes are distinguished by the presence of a local maximum of the scale factor, which allows the analytically continued Lorentzian spacetime to expand after materialization. We present explicit numerical wormhole solutions supported either by an axionic field or a magnetic gauge field, in both cases in conjunction with a self-interacting scalar field. More exotic solutions, with multiple extrema of the scale factor, are also described. As we discovered recently, in the limit of small axionic or magnetic charge, wineglass wormhole solutions split into two separate geometries, one being the background spacetime and the other a disconnected no-boundary instanton. We study the associated topology changing transition in detail and provide an extensive discussion of both the properties and puzzles exhibited by this common family of wineglass/no-boundary instantons.
title Birth of Inflationary Universes via Wineglass Wormholes and their No-Boundary Relatives
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2605.10548