English

The Moduli Space Curvature and the Weak Gravity Conjecture

High Energy Physics - Theory 2025-02-05 v2

Abstract

We unveil a remarkable interplay between rigid field theories (RFTs), charge-to-mass ratios γ\gamma and scalar curvature divergences Rdiv\mathsf{R}_{\rm div} in the vector multiplet moduli space of 4d N=2{\cal N}=2 supergravities, obtained upon compactifying type II string theory on Calabi--Yau threefolds. We show that the condition to obtain an RFT that decouples from gravity implies a divergence in the γ\gamma of (would-be) BPS particles charged under the rigid theory, and vice-versa. For weak coupling limits, where the scalar curvature diverges, we argue that such BPS particles exist and that Rdivγ2\mathsf{R}_{\rm div} \lesssim \gamma^2, implying that all these divergences are a consequence of RFT limits. More precisely, along geodesics we find that Rdiv(Λwgc/Λg)2\mathsf{R}_{\rm div} \sim (\Lambda_{\rm wgc}/\Lambda_g)^2, where ΛwgcgrigidMPl\Lambda_{\rm wgc} \equiv g_{\rm rigid} M_{\rm Pl} is the RFT cut-off estimate of the Weak Gravity Conjecture and Λg=grigid2ΛRFT\Lambda_g = g_{\rm rigid}^{-2} \Lambda_{\rm RFT} the electrostatic energy integrated up to its actual cut-off ΛRFT\Lambda_{\rm RFT}.

Keywords

Cite

@article{arxiv.2410.10966,
  title  = {The Moduli Space Curvature and the Weak Gravity Conjecture},
  author = {Alberto Castellano and Fernando Marchesano and Luca Melotti and Lorenzo Paoloni},
  journal= {arXiv preprint arXiv:2410.10966},
  year   = {2025}
}

Comments

8 pages; v2: minor modifications and clarifications added

R2 v1 2026-06-28T19:21:26.483Z