English

Bootstrapping the Chiral-Gravitational Anomaly

High Energy Physics - Theory 2025-01-15 v2 High Energy Physics - Phenomenology

Abstract

We analyze causality and unitarity constraints in graviton scattering amplitudes, aiming to establish new bounds on theories with U(1)U(1)-gravitational anomalies, such as axion models or strongly-coupled gauge theories. For this purpose, we show the necessity of coupling these theories to gravity. We obtain a universal scale Λcaus\Lambda_{\rm caus} at which states with J4J\geq 4 must appear in the theory. We show that this scale can lie below the quantum gravity scale. For axion models, we get ΛcausMPfa\Lambda_{\rm caus}\sim\sqrt{M_P f_a} where faf_a is the axion decay constant. In strongly-coupled gauge theories in the large-NcN_c limit, the presence of glueballs allows to evade these bounds, provided the number of fermions NFNcN_F\ll N_c and the 'tHooft coupling is not large. Nevertheless, for models that have a holographic 5D dual (large 'tHooft coupling), Λcaus\Lambda_{\rm caus} emerges as a new cutoff scale, unless certain conditions on the parameters of the 5D models are satisfied.

Keywords

Cite

@article{arxiv.2411.14422,
  title  = {Bootstrapping the Chiral-Gravitational Anomaly},
  author = {Zi-Yu Dong and Teng Ma and Alex Pomarol and Francesco Sciotti},
  journal= {arXiv preprint arXiv:2411.14422},
  year   = {2025}
}
R2 v1 2026-06-28T20:08:13.536Z