Classification of Coupled-Channel Near-Threshold Structures

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Auteurs principaux: Zhang, Zhen-Hua, Guo, Feng-Kun
Format: Preprint
Publié: 2024
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author Zhang, Zhen-Hua
Guo, Feng-Kun
author_facet Zhang, Zhen-Hua
Guo, Feng-Kun
contents Since 2003, plenty of resonant structures have been observed in the heavy quarkonium regime. Many of them are close to the thresholds of a few pairs of heavy hadrons. They are candidates of exotic hadrons and have attracted immense attentions. Based on a coupled-channel nonrelativistic effective field theory, we classify the near-threshold structures of a symmetry-related two-channel system by studying the evolution of the scattering amplitude line shapes and pole positions with the variation of the single-channel scattering length and channel coupling strength. We show that the evolution of the scattering amplitude line shapes can be understood from the pole trajectories in the complex energy plane, and the pole evolution can be traced back to the renormalization group fixed points. We provide a dictionary of correspondence between the evolution of line shapes and pole trajectories along with varying interaction and channel coupling strengths, which can be used to understand the experimental observations of the near-threshold structures.
format Preprint
id arxiv_https___arxiv_org_abs_2407_10620
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Classification of Coupled-Channel Near-Threshold Structures
Zhang, Zhen-Hua
Guo, Feng-Kun
High Energy Physics - Phenomenology
High Energy Physics - Experiment
Nuclear Theory
Since 2003, plenty of resonant structures have been observed in the heavy quarkonium regime. Many of them are close to the thresholds of a few pairs of heavy hadrons. They are candidates of exotic hadrons and have attracted immense attentions. Based on a coupled-channel nonrelativistic effective field theory, we classify the near-threshold structures of a symmetry-related two-channel system by studying the evolution of the scattering amplitude line shapes and pole positions with the variation of the single-channel scattering length and channel coupling strength. We show that the evolution of the scattering amplitude line shapes can be understood from the pole trajectories in the complex energy plane, and the pole evolution can be traced back to the renormalization group fixed points. We provide a dictionary of correspondence between the evolution of line shapes and pole trajectories along with varying interaction and channel coupling strengths, which can be used to understand the experimental observations of the near-threshold structures.
title Classification of Coupled-Channel Near-Threshold Structures
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
Nuclear Theory
url https://arxiv.org/abs/2407.10620