arXiv · 2512.06088
Inferring the breakdown scales of the chiral expansions for $g_A$ and $m_N$
Abstract
We apply Bayesian inference to the order-by-order chiral perturbation theory ($\chi$PT) expansions for the axial-vector coupling constant $g_A$ and the nucleon mass m_N, and thereby infer the scales at which $\chi$PT breaks down for these two observables. Using a pointwise Bayesian analysis, we find that the inferred breakdown scales are notably different for the two observables. For the chiral expansion of $g_A$, we obtain $251^{+20}_{-50}$ MeV and $211^{+20}_{-30}$ MeV using two distinct sets of low-energy constants, while for the chiral expansion of $m_N$ we infer a significantly larger breakdown scale of $491^{+60}_{-90}$ MeV.
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Andreas Ekström, Daniel R. Phillips, Lucas Platter, Matthias R. Schindler. 2025-12-05. Inferring the breakdown scales of the chiral expansions for $g_A$ and $m_N$. https://arxiv.org/abs/2512.06088
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