Quantum conformal symmetries for spacetimes in superposition

Fuente: arXiv
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Main Authors: Kabel, Viktoria, de la Hamette, Anne-Catherine, Castro-Ruiz, Esteban, Brukner, Časlav
Format: Preprint
Published: 2022
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author Kabel, Viktoria
de la Hamette, Anne-Catherine
Castro-Ruiz, Esteban
Brukner, Časlav
author_facet Kabel, Viktoria
de la Hamette, Anne-Catherine
Castro-Ruiz, Esteban
Brukner, Časlav
contents Without a complete theory of quantum gravity, the question of how quantum fields and quantum particles behave in a superposition of spacetimes seems beyond the reach of theoretical and experimental investigations. Here we use an extension of the quantum reference frame formalism to address this question for the Klein-Gordon field residing on a superposition of conformally equivalent metrics. Based on the group structure of ``quantum conformal transformations'', we construct an explicit quantum operator that can map states describing a quantum field on a superposition of spacetimes to states representing a quantum field with a superposition of masses on a Minkowski background. This constitutes an extended symmetry principle, namely invariance under quantum conformal transformations. The latter allows to build an understanding of superpositions of diffeomorphically non-equivalent spacetimes by relating them to a more intuitive superposition of quantum fields on curved spacetime. Furthermore, it can be used to import the phenomenon of particle production in curved spacetime to its conformally equivalent counterpart, thus revealing new features in modified Minkowski spacetime.
format Preprint
id arxiv_https___arxiv_org_abs_2207_00021
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Quantum conformal symmetries for spacetimes in superposition
Kabel, Viktoria
de la Hamette, Anne-Catherine
Castro-Ruiz, Esteban
Brukner, Časlav
Quantum Physics
General Relativity and Quantum Cosmology
High Energy Physics - Theory
Without a complete theory of quantum gravity, the question of how quantum fields and quantum particles behave in a superposition of spacetimes seems beyond the reach of theoretical and experimental investigations. Here we use an extension of the quantum reference frame formalism to address this question for the Klein-Gordon field residing on a superposition of conformally equivalent metrics. Based on the group structure of ``quantum conformal transformations'', we construct an explicit quantum operator that can map states describing a quantum field on a superposition of spacetimes to states representing a quantum field with a superposition of masses on a Minkowski background. This constitutes an extended symmetry principle, namely invariance under quantum conformal transformations. The latter allows to build an understanding of superpositions of diffeomorphically non-equivalent spacetimes by relating them to a more intuitive superposition of quantum fields on curved spacetime. Furthermore, it can be used to import the phenomenon of particle production in curved spacetime to its conformally equivalent counterpart, thus revealing new features in modified Minkowski spacetime.
title Quantum conformal symmetries for spacetimes in superposition
topic Quantum Physics
General Relativity and Quantum Cosmology
High Energy Physics - Theory
url https://arxiv.org/abs/2207.00021