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Dynamics of Non-minimally Coupled Scalar Fields in the Jordan Frame

The presence of scalar fields with non-minimal gravitational interactions of the form $\xi |\phi|^2 R$ may have important implications for the physics of the early universe. While many studies solve the dynamics of non-minimally coupled scalars in the Einstein frame, where gravity is simply describe...

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Autores principales: Figueroa, Daniel G., Florio, Adrien, Opferkuch, Toby, Stefanek, Ben A.
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.21468/SciPostPhys.15.3.077
http://cds.cern.ch/record/2798401
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author Figueroa, Daniel G.
Florio, Adrien
Opferkuch, Toby
Stefanek, Ben A.
author_facet Figueroa, Daniel G.
Florio, Adrien
Opferkuch, Toby
Stefanek, Ben A.
author_sort Figueroa, Daniel G.
collection CERN
description The presence of scalar fields with non-minimal gravitational interactions of the form $\xi |\phi|^2 R$ may have important implications for the physics of the early universe. While many studies solve the dynamics of non-minimally coupled scalars in the Einstein frame, where gravity is simply described by the Einstein-Hilbert action, we instead propose a procedure to solve the dynamics directly in the original Jordan frame where the non-minimal couplings are maintained explicitly. Our algorithm can be applied to scenarios that include minimally coupled fields and an arbitrary number of non-minimally coupled scalars, with the expansion of the universe sourced by all fields present. This includes situations when the dynamics become fully inhomogeneous, fully non-linear (due to e.g.~backreaction or mode rescattering effects), and/or when the expansion of the universe is dominated by non-minimally coupled species. As an example, we study geometric preheating with a non-minimally coupled scalar spectator field when the inflaton oscillates following the end of inflation. In the future, our technique may be used to shed light on aspects of the equivalence of the Jordan and Einstein frames at the quantum level.
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spelling cern-27984012023-10-21T02:25:32Zdoi:10.21468/SciPostPhys.15.3.077http://cds.cern.ch/record/2798401engFigueroa, Daniel G.Florio, AdrienOpferkuch, TobyStefanek, Ben A.Dynamics of Non-minimally Coupled Scalar Fields in the Jordan Framehep-phParticle Physics - Phenomenologygr-qcGeneral Relativity and Cosmologyastro-ph.COAstrophysics and AstronomyThe presence of scalar fields with non-minimal gravitational interactions of the form $\xi |\phi|^2 R$ may have important implications for the physics of the early universe. While many studies solve the dynamics of non-minimally coupled scalars in the Einstein frame, where gravity is simply described by the Einstein-Hilbert action, we instead propose a procedure to solve the dynamics directly in the original Jordan frame where the non-minimal couplings are maintained explicitly. Our algorithm can be applied to scenarios that include minimally coupled fields and an arbitrary number of non-minimally coupled scalars, with the expansion of the universe sourced by all fields present. This includes situations when the dynamics become fully inhomogeneous, fully non-linear (due to e.g.~backreaction or mode rescattering effects), and/or when the expansion of the universe is dominated by non-minimally coupled species. As an example, we study geometric preheating with a non-minimally coupled scalar spectator field when the inflaton oscillates following the end of inflation. In the future, our technique may be used to shed light on aspects of the equivalence of the Jordan and Einstein frames at the quantum level.The presence of scalar fields with non-minimal gravitational interactions of the form .|f|2R may have important implications for the physics of the early universe. We propose a procedure to solve the dynamics of non-minimally coupled scalar fields directly in the Jordan frame, where the non-minimal couplings are maintained explicitly. Our algorithm can be applied to lattice simulations that include minimally coupled fields and an arbitrary number of non-minimally coupled scalars, with the expansion of the universe sourced by all fields present. This includes situations when the dynamics become fully inhomogeneous, fully non-linear (due to e.g. backreaction or mode rescattering effects), and/or when the expansion of the universe is dominated by non-minimally coupled species. As an example, we study geometric preheating with a non-minimally coupled scalar spectator field when the inflaton oscillates following the end of inflation.arXiv:2112.08388oai:cds.cern.ch:27984012021-12-15
spellingShingle hep-ph
Particle Physics - Phenomenology
gr-qc
General Relativity and Cosmology
astro-ph.CO
Astrophysics and Astronomy
Figueroa, Daniel G.
Florio, Adrien
Opferkuch, Toby
Stefanek, Ben A.
Dynamics of Non-minimally Coupled Scalar Fields in the Jordan Frame
title Dynamics of Non-minimally Coupled Scalar Fields in the Jordan Frame
title_full Dynamics of Non-minimally Coupled Scalar Fields in the Jordan Frame
title_fullStr Dynamics of Non-minimally Coupled Scalar Fields in the Jordan Frame
title_full_unstemmed Dynamics of Non-minimally Coupled Scalar Fields in the Jordan Frame
title_short Dynamics of Non-minimally Coupled Scalar Fields in the Jordan Frame
title_sort dynamics of non-minimally coupled scalar fields in the jordan frame
topic hep-ph
Particle Physics - Phenomenology
gr-qc
General Relativity and Cosmology
astro-ph.CO
Astrophysics and Astronomy
url https://dx.doi.org/10.21468/SciPostPhys.15.3.077
http://cds.cern.ch/record/2798401
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