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arXiv:2609.09282·v1·High Energy Physics — Theory

Bounds on scattering amplitudes of non-identical scalar particles in 4d

Gabriele Ferretti🇸🇪 · Denis Karateev🇨🇭 · Alessandro Piazza🇮🇹 · Marco Serone🇮🇹

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Abstract

We initiate the study of two-to-two scattering amplitudes involving two distinct scalar particles in spacetime dimensions using the primal S-matrix bootstrap. We impose a global symmetry under which the two particles are the lightest ones carrying charges and , guaranteeing their absolute stability and absence of triangular anomalous thresholds. For unequal masses, the presence of a pseudo-physical cut whose discontinuity is not directly constrained by physical unitarity qualitatively changes the bootstrap problem. We find several observables to be unbounded, while others obey non-trivial one-sided bounds or become bounded once another observable is fixed. In the equal-mass limit, where the pseudo-physical region disappears, two-sided bounds are recovered. As a proof of concept, we show that supplying information about the pseudo-physical discontinuity through an Omnès parametrisation also restores boundedness. Our results provide a starting point for future studies of physical processes such as pion-kaon and pion-nucleon scattering.

Comments: 34 pages + appendices, 22 figures