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arXiv:2608.21951·v1·High Energy Physics — Phenomenology

Axion-like particle production from kaon decays within U(3) chiral theory

Jinbao Wang · Zhihui Guo · Haiqing Zhou

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Abstract

Kaon decays provide important constraints on the axion-like particle (ALP), particularly through the processes. In this work, we compute the decay amplitudes, as well as the decay amplitudes, at leading order within U(3) chiral perturbation theory. The final-state interaction effects in both processes are implemented by employing the chiral unitarization approach. The relevant weak low-energy constants are determined by fitting to the experimental data on decays. Our numerical analysis shows that the explicit contribution to the amplitudes is small, whereas the new weak operator unique to the U(3) theory can give a sizable contribution. The final-state interactions are found to be insignificant in the decays, but give pronounced effects in the channels. Constraints on the ALP couplings are derived from the most recent NA62 upper limit on the decay. For completeness, we also include constraints from the KOTO search for , the NA62 measurement of , and the NA48 measurement of .

Comments: 35 pages, 10 figures, 1 table