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Abstract We provide a fresh look at the cosmological constraints on axion-like particles (ALPs) that couple predominantly to photons, focusing on lifetimes ₀ 10^4\, s τ a ≲ 10 4 s and masses mₐ 10\, GeV m a ≲ 10 GeV. We consider Big Bang nucleosynthesis (BBN) and Cosmic Microwave Background (CMB) bounds and explore how these limits depend upon the unknown reheating temperature of the Universe, Tᵣeh T reh. Compared with some previous studies, we account for the rare decays of these ALPs into light hadrons and show that this leads to extended constraints for several reheating temperatures. Our limits are cast in a model-independent way, and we identify regions of parameter space where these ALPs could alleviate small tensions in the determinations of Nₑff N eff and the deuterium abundance. Our Mathematica BBN code is publicly available at.
Escudero et al. (2026) studied this question.