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arXiv:1811.09748·v4·High Energy Physics — Phenomenology

New Insights on Low Energy Scattering Amplitudes: Comprehensive Analyses at Level

Yu-Fei Wang🇨🇳 · De-Liang Yao🇨🇳 · Han-Qing Zheng🇨🇳

Abstract

A production representation of partial-wave matrix is utilized to construct low-energy elastic pion-nucleon scattering amplitudes from cuts and poles on complex Riemann sheets. Among them, the contribution of left-hand cuts is estimated using the results obtained in covariant baryon chiral perturbation theory within the extended-on-nass-shell scheme. By fitting to data on partial-wave phase shifts, it is indicated that the existences of hidden poles in and channels, as conjectured in our previous paper~\citep{Wang:2017agd}, are firmly established. Specifically, the pole mass of the hidden resonance is determined to be MeV, whereas, the virtual pole in the channel locates at MeV. It is found that analyses at the level improves significantly the fit quality, comparing with the previous one. Quantitative studies with cautious physical discussions are also conducted for the other - and -wave channels.

Comments: 38 pages. Published in Chinese Physics C

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