Braneworld-f(R,T,G)

This article explores how modifications to gravity influence the structure of the brane, with the goal of identifying the gravitational model that most closely reflects the one governing our physical universe. To achieve this, we consider a generalization of standard General Relativity. The stabilit...

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Main Authors: A.R.P. Moreira, Shi-Hai Dong
Format: Article
Language:English
Published: Elsevier 2025-09-01
Series:Nuclear Physics B
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0550321325002342
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author A.R.P. Moreira
Shi-Hai Dong
author_facet A.R.P. Moreira
Shi-Hai Dong
author_sort A.R.P. Moreira
collection DOAJ
description This article explores how modifications to gravity influence the structure of the brane, with the goal of identifying the gravitational model that most closely reflects the one governing our physical universe. To achieve this, we consider a generalization of standard General Relativity. The stability of the model is evaluated through probabilistic measurements, revealing minimum points that represent the most probable and stable configurations of the brane for different values of the gravitational terms. Furthermore, the location of fermions on the brane is affected by gravitational variations, with the presence of resonance modes and the possibility of leakage of massive fermions into the bulk. Numerical analyses are presented, showing that the increase in the influence of gravitational terms increases the certainty of the location of massless fermions on the brane. All these results provide important insights for understanding the dynamics of the braneworld universe.
format Article
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issn 0550-3213
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publishDate 2025-09-01
publisher Elsevier
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series Nuclear Physics B
spelling doaj-art-578c88c19ee745faa96da92f98cf9e9c2025-08-20T03:50:50ZengElsevierNuclear Physics B0550-32132025-09-01101811702510.1016/j.nuclphysb.2025.117025Braneworld-f(R,T,G)A.R.P. Moreira0Shi-Hai Dong1Research Center for Quantum Physics, Huzhou University, Huzhou, 313000, PR China; Secretaria da Educação do Ceará (SEDUC), Coordenadoria Regional de Desenvolvimento da Educação (CREDE 9), Horizonte, Ceará, 62880-384, Brazil; Corresponding author.Research Center for Quantum Physics, Huzhou University, Huzhou, 313000, PR China; Centro de Investigación en Computación, Instituto Politécnico Nacional, UPALM, CDMX 07700, MexicoThis article explores how modifications to gravity influence the structure of the brane, with the goal of identifying the gravitational model that most closely reflects the one governing our physical universe. To achieve this, we consider a generalization of standard General Relativity. The stability of the model is evaluated through probabilistic measurements, revealing minimum points that represent the most probable and stable configurations of the brane for different values of the gravitational terms. Furthermore, the location of fermions on the brane is affected by gravitational variations, with the presence of resonance modes and the possibility of leakage of massive fermions into the bulk. Numerical analyses are presented, showing that the increase in the influence of gravitational terms increases the certainty of the location of massless fermions on the brane. All these results provide important insights for understanding the dynamics of the braneworld universe.http://www.sciencedirect.com/science/article/pii/S0550321325002342Generalization of general relativityBraneworldFermion locationProbabilistic measures
spellingShingle A.R.P. Moreira
Shi-Hai Dong
Braneworld-f(R,T,G)
Nuclear Physics B
Generalization of general relativity
Braneworld
Fermion location
Probabilistic measures
title Braneworld-f(R,T,G)
title_full Braneworld-f(R,T,G)
title_fullStr Braneworld-f(R,T,G)
title_full_unstemmed Braneworld-f(R,T,G)
title_short Braneworld-f(R,T,G)
title_sort braneworld f r t g
topic Generalization of general relativity
Braneworld
Fermion location
Probabilistic measures
url http://www.sciencedirect.com/science/article/pii/S0550321325002342
work_keys_str_mv AT arpmoreira braneworldfrtg
AT shihaidong braneworldfrtg