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arXiv · 2512.10241

Studies on quark-mass dependence of the $N^*(920)$ pole from $\pi N$ $\chi$PT amplitudes

Abstract

The quark-mass dependence of the $N^*(920)$ pole is analyzed using $K$-matrix method, with the $\pi N$ scattering amplitude calculated up to $O(p^3)$ order in chiral perturbation theory. As the quark mass increases, the $N^*(920)$ pole gradually approaches the real axis in the complex $w$-plane (where $w=\sqrt{s}$). Eventually, in the $O(p^2)$ case, it crosses the $u$-cut on the real axis and enters the adjacent Riemann sheet when the pion mass reaches $526~{\rm MeV}$. At order $O(p^3)$, the rate at which it approaches the real axis slows down; however, we argue that it will ultimately cross the $u$-cut and enter the adjacent Riemann sheet as well. Additionally, the trajectory of the \(N^*(920)\) pole is in qualitative agreement with the results from the linear $\sigma$ model calculation.

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Xu Wang, Kai-Ge Kang, Qu-Zhi Li, Zhiguang Xiao, Han-Qing Zheng. 2025-12-11. Studies on quark-mass dependence of the $N^*(920)$ pole from $\pi N$ $\chi$PT amplitudes. https://arxiv.org/abs/2512.10241

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