Volume 345, Issue 2-3 e230171
PROCEEDING

Noncommutative branch-cut quantum gravity with a self-coupling inflation scalar field: Dynamical equations

Peter O. Hess

Corresponding Author

Peter O. Hess

Departamento de la Estructura de la Materia, Universidad Nacional Autónoma de Mexico (UNAM), México City, Mexico

Nuclear Physics, Frankfurt Institute for Advanced Studies (FIAS), Hessen, Germany

Correspondence

Peter O. Hess, Departamento de la Estructura de la Materia, Universidad Nacional Autónoma de Mexico (UNAM), México City, México.

Email: [email protected]

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Fridolin Weber

Fridolin Weber

Department of Physics, San Diego State University (SDSU), San Diego, California, USA

Department of Physics, University of California at San Diego (UCSD), La Jolla, California, USA

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Benno Bodmann

Benno Bodmann

Department of Physics, Universidade Federal de Santa Maria (UFSM), Santa Maria, Brazil

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José de Freitas Pacheco

José de Freitas Pacheco

Department Laboratoire J. L. Lagrange, Observatoire de la Côte d'Azur, Nice, France

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Dimiter Hadjimichef

Dimiter Hadjimichef

Instituto de Física, Universidade Federal do Rio Grande do Sul (UFRGS), Porto Alegre, Brazil

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Marcelo Netz-Marzola

Marcelo Netz-Marzola

Instituto de Física, Universidade Federal do Rio Grande do Sul (UFRGS), Porto Alegre, Brazil

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Geovane Naysinger

Geovane Naysinger

Instituto de Física, Universidade Federal do Rio Grande do Sul (UFRGS), Porto Alegre, Brazil

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Moisés Razeira

Moisés Razeira

Departamento de Fisica, Universidade Federal do Pampa (UNIPAMPA), Caçapava do Sul, Brazil

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César A. Zen Vasconcellos

César A. Zen Vasconcellos

Instituto de Física, Universidade Federal do Rio Grande do Sul (UFRGS), Porto Alegre, Brazil

International Center for Relativistic Astrophysics Network (ICRANet), Pescara, Italy

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First published: 02 January 2024

Abstract

This article focuses on a recently developed formulation based on the noncommutative branch-cut cosmology, the Wheeler-DeWitt (WdW) equation, the Hořava–Lifshitz quantum gravity, chaotic and the coupling of the corresponding Lagrangian approach with the inflaton scalar field. Assuming a mini-superspace of variables obeying the noncommutative Poisson algebra, we examine the impact of the inflaton scalar field on the evolutionary dynamics of the branch-cut Universe scale factor, characterized by the dimensionless helix-like function ln 1 [ β ( t ) ] $$ {\ln}^{-1}\left[\beta (t)\right] $$ . This scale factor characterizes a Riemannian foliated spacetime that topologically overcomes the primordial singularities. We take the Hořava–Lifshitz action modeled by branch-cut quantum gravity as our starting point, which depends on the scalar curvature of the branched Universe and its derivatives and which preserves the diffeomorphism property of General Relativity, maintaining compatibility with the Arnowitt–Deser–Misner formalism. We then investigate the sensitivity of the scale factor of the branch-cut Universe's dynamics.

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