Consistent Evaluation of the No-Boundary Proposal

Fuente: arXiv
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Autori principali: Abdalla, Ahmed I., Antonini, Stefano, Bousso, Raphael, Iliesiu, Luca V., Levine, Adam, Shahbazi-Moghaddam, Arvin
Natura: Preprint
Pubblicazione: 2026
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author Abdalla, Ahmed I.
Antonini, Stefano
Bousso, Raphael
Iliesiu, Luca V.
Levine, Adam
Shahbazi-Moghaddam, Arvin
author_facet Abdalla, Ahmed I.
Antonini, Stefano
Bousso, Raphael
Iliesiu, Luca V.
Levine, Adam
Shahbazi-Moghaddam, Arvin
contents We revisit the Hartle-Hawking no-boundary proposal. To extract probabilities, one must use the gravitational path integral (GPI) to compute not only the no-boundary amplitude, but also the norms by which its square is divided. We find that this dramatically alters predictions: the probability for any closed universe is either nearly 1, or exactly 1. That is, in the Hilbert space of closed universes defined by the GPI, the states of interest in cosmology are all nearly parallel to the Hartle-Hawking state up to nonperturbative corrections in $G_N^{-1}$. We also consider a statistical interpretation of the GPI, as an average of arbitrary products of amplitudes. We find that all amplitudes are exactly 1 in this case, consistent with recent arguments that the statistical approach to the GPI with a closed boundary computes an average over one-dimensional Hilbert spaces. As an example, we illustrate the consistent evaluation of the no-boundary proposal in inflationary cosmology.
format Preprint
id arxiv_https___arxiv_org_abs_2602_02682
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Consistent Evaluation of the No-Boundary Proposal
Abdalla, Ahmed I.
Antonini, Stefano
Bousso, Raphael
Iliesiu, Luca V.
Levine, Adam
Shahbazi-Moghaddam, Arvin
High Energy Physics - Theory
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
We revisit the Hartle-Hawking no-boundary proposal. To extract probabilities, one must use the gravitational path integral (GPI) to compute not only the no-boundary amplitude, but also the norms by which its square is divided. We find that this dramatically alters predictions: the probability for any closed universe is either nearly 1, or exactly 1. That is, in the Hilbert space of closed universes defined by the GPI, the states of interest in cosmology are all nearly parallel to the Hartle-Hawking state up to nonperturbative corrections in $G_N^{-1}$. We also consider a statistical interpretation of the GPI, as an average of arbitrary products of amplitudes. We find that all amplitudes are exactly 1 in this case, consistent with recent arguments that the statistical approach to the GPI with a closed boundary computes an average over one-dimensional Hilbert spaces. As an example, we illustrate the consistent evaluation of the no-boundary proposal in inflationary cosmology.
title Consistent Evaluation of the No-Boundary Proposal
topic High Energy Physics - Theory
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2602.02682