English

The Dark Dimension and the Swampland

High Energy Physics - Theory 2023-03-06 v3 High Energy Physics - Phenomenology

Abstract

Motivated by principles from the Swampland program, which characterize requirements for a consistent UV completion of quantum gravity, combined with observational data, we are led to a unique corner of the quantum gravity landscape. In particular, using the Distance/Duality conjecture and the smallness of dark energy, we predict the existence of a light tower of states and a unique extra mesoscopic dimension of length lΛ14106ml\sim \Lambda^{-\frac{1}{4}}\sim 10^{-6}\, m, with extra massless fermions propagating on it. This automatically leads to a candidate for a tower of sterile neutrinos, and an associated active neutrino mass scale mνH2Λ112Mpl23m_{\nu}\sim \langle H\rangle^2\, \Lambda^{-\frac{1}{12}}M_{pl}^{-\frac{2}{3}}. Moreover, assuming the mechanism for stabilization of this dark dimension leads to similar masses for active and sterile neutrinos we are led to the prediction of a Higgs vev HΛ16Mpl13\langle H\rangle \sim \Lambda^{\frac{1}{6}}M_{pl}^{\frac{1}{3}}. Another prediction of the scenario is a species scale M^Λ112Mpl231091010GeV{\hat M} \sim \Lambda^ {\frac{1}{12}}M_{pl}^{\frac{2}{3}}\sim 10^{9}-10^{10} GeV, corresponding to the higher-dimensional Planck scale. This energy scale may be related to the resolution of the instability of the Higgs effective potential present at a scale of 1011GeV\sim 10^{11}\, GeV. We also speculate about the interplay between this energy scale and the GZK limit on ultra-high energy cosmic rays.

Keywords

Cite

@article{arxiv.2205.12293,
  title  = {The Dark Dimension and the Swampland},
  author = {Miguel Montero and Cumrun Vafa and Irene Valenzuela},
  journal= {arXiv preprint arXiv:2205.12293},
  year   = {2023}
}

Comments

13 pages + refs; 2 figures. v2: further details and references added; v3: Published version

R2 v1 2026-06-24T11:27:31.222Z