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NNLO Positivity Bounds on Chiral Perturbation Theory for a General Number of Flavours

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abstract

We present positivity bounds, derived from the principles of analyticity, unitarity and crossing symmetry, that constrain the low-energy constants of chiral perturbation theory. Bounds are produced for 2, 3 or more flavours in meson-meson scattering with equal meson masses, up to and including next-to-next-to-leading order (NNLO), using the second and higher derivatives of the amplitude. We enhance the bounds by using the most general isospin combinations posible (or higher-flavour counterparts thereof) and by analytically integrating the low-energy range of the discontinuities. In addition, we present a powerful and general mathematical framework for efficiently managing large numbers of positivity bounds.

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 8 · 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.