The Study of Pole Trajectory within a bare state in the coupled channel model

Fuente: arXiv
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Main Authors: Hao, Wei, Wu, Jia-Jun, Fu, Jin-Lin
Format: Preprint
Published: 2025
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author Hao, Wei
Wu, Jia-Jun
Fu, Jin-Lin
author_facet Hao, Wei
Wu, Jia-Jun
Fu, Jin-Lin
contents We investigate two-particle scattering and two-particle scattering with a bare basis state using Hamiltonian Effective Field Theory (HEFT). We analyze the distribution of two-body scattering poles in the momentum and energy planes under relativistic conditions. Compared to the non-relativistic case, there are significant differences in the distribution of bound state poles and resonance poles in the relativistic case, primarily due to the square root term in the relativistic formula. By considering pure two-particle scattering, we examine the relationship between the form factor and the number of poles. Additionally, we clearly elucidate the effects of attractive and repulsive interactions on the bound state poles and resonance poles. More importantly, we extend our model by including a bare state and explore the poles originating from the bare state or coupled channels through the trajectories of pole positions, as well as the compositeness of bound states.
format Preprint
id arxiv_https___arxiv_org_abs_2506_02526
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Study of Pole Trajectory within a bare state in the coupled channel model
Hao, Wei
Wu, Jia-Jun
Fu, Jin-Lin
High Energy Physics - Phenomenology
Nuclear Theory
We investigate two-particle scattering and two-particle scattering with a bare basis state using Hamiltonian Effective Field Theory (HEFT). We analyze the distribution of two-body scattering poles in the momentum and energy planes under relativistic conditions. Compared to the non-relativistic case, there are significant differences in the distribution of bound state poles and resonance poles in the relativistic case, primarily due to the square root term in the relativistic formula. By considering pure two-particle scattering, we examine the relationship between the form factor and the number of poles. Additionally, we clearly elucidate the effects of attractive and repulsive interactions on the bound state poles and resonance poles. More importantly, we extend our model by including a bare state and explore the poles originating from the bare state or coupled channels through the trajectories of pole positions, as well as the compositeness of bound states.
title The Study of Pole Trajectory within a bare state in the coupled channel model
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2506.02526