Localization of bulk matter fields, the hierarchy problem and corrections to Coulomb's law on a pure de Sitter thick braneworld
Heng Guo, Alfredo Herrera-Aguilar, Yu-Xiao Liu, Dagoberto, Malagon-Morejon, Refugio Rigel Mora-Luna

TL;DR
This paper explores matter field localization, mass spectra, and hierarchy generation on a de Sitter thick braneworld, revealing how geometric configurations influence particle confinement and corrections to Coulomb's law.
Contribution
It introduces a purely geometric thick brane model with a small 4D cosmological constant, analyzing matter localization, mass spectra, and hierarchy mechanisms without bulk scalar fields.
Findings
Scalar and vector zero modes are localized on the brane.
Mass gaps exist in the KK spectra of matter fields.
Corrections to Coulomb's law are computed from KK modes.
Abstract
In this paper we investigate the localization and mass spectra of matter fields with spin 0, 1 and 1/2 on a geometric thick brane generated by pure 4D and 5D positive cosmological constants without bulk scalar fields. This model possesses a 4D cosmological constant that can be made as small as one desires without fine-tuning it with the bulk cosmological constant. The RS model is obtained as an analytic continuation of the flat brane limit of this braneworld configuration when the Hubble parameter disappears. Within this inflating braneworld model it is possible to formulate a mechanism for obtaining TeV mass scales from Planck ones by adding a positive thin brane, where the Standard Model fields are trapped, at a distance y_2 from the origin, where the Planck thick brane resides. The brane separation must be of the same order than the inverse thickness parameter of the model in order…
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