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A Species or Weak-Gravity Bound for Large $N$ Gauge Theories Coupled to Gravity

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abstract

Causality constrains the gravitational interactions of massive higher spin particles in both AdS and flat spacetime. We explore the extent to which these constraints apply to composite particles, explaining why they do not rule out macroscopic objects or hydrogen atoms. However, we find that they do apply to glueballs and mesons in confining large $N$ gauge theories. Assuming such theories contain massive bound states of general spin, we find parametric bounds in $(3+1)$ spacetime dimensions of the form $N\lesssim \frac{M_{Pl}}{\Lambda_{\text{QCD}}}$ relating $N$, the QCD scale, and the Planck scale. We also argue that a stronger bound replacing $\Lambda_{\text{QCD}}$ with the UV cut-off scale may be derived from eikonal scattering in flat spacetime.

fields

hep-th 1

years

2024 1

verdicts

CONDITIONAL 1

representative citing papers

Bootstrapping the Chiral-Gravitational Anomaly

hep-th · 2024-11-21 · conditional · novelty 7.0

Causality and unitarity force J≥4 resonances to appear below Λcaus approximately sqrt(MP Fπ/κg) in any EFT with a U(1)-gravitational anomaly.

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  • Bootstrapping the Chiral-Gravitational Anomaly hep-th · 2024-11-21 · conditional · none · ref 34 · internal anchor

    Causality and unitarity force J≥4 resonances to appear below Λcaus approximately sqrt(MP Fπ/κg) in any EFT with a U(1)-gravitational anomaly.