Mass hierarchy, mass gap and corrections to Newton's law on thick branes with Poincare symmetry
Nandinii Barbosa-Cendejas, Alfredo Herrera-Aguilar, Konstantinos, Kanakoglou, Ulises Nucamendi, Israel Quiros

TL;DR
This paper analyzes thick brane models in 5D gravity with scalar fields, deriving analytical solutions for graviton spectra, studying mass gaps, and computing corrections to Newton's law, offering insights into the hierarchy problem.
Contribution
It provides new analytical solutions for the graviton spectrum in thick branes, including cases with mass gaps and continuous modes, simplifying the hierarchy problem analysis.
Findings
Mass gap in KK spectrum linked to brane thickness.
Analytical solutions for massive modes using Legendre and Heun equations.
Thick brane models can address the hierarchy problem without singularities.
Abstract
We consider a scalar thick brane configuration arising in a 5D theory of gravity coupled to a self-interacting scalar field in a Riemannian manifold. We start from known classical solutions of the corresponding field equations and elaborate on the physics of the transverse traceless modes of linear fluctuations of the classical background, which obey a Schroedinger-like equation. We further consider two special cases in which this equation can be solved analytically for any massive mode with m^2>0, in contrast with numerical approaches, allowing us to study in closed form the massive spectrum of Kaluza-Klein (KK) excitations and to compute the corrections to Newton's law in the thin brane limit. In the first case we consider a solution with a mass gap in the spectrum of KK fluctuations with two bound states - the massless 4D graviton free of tachyonic instabilities and a massive KK…
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