Collective description of low energy mesonic states

Fuente: arXiv
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Main Authors: Yepez-Martinez, Tochtli, Trejo, Octavio Rico, Hess, Peter Otto, Civitarese, Osvaldo
Format: Preprint
Published: 2024
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author Yepez-Martinez, Tochtli
Trejo, Octavio Rico
Hess, Peter Otto
Civitarese, Osvaldo
author_facet Yepez-Martinez, Tochtli
Trejo, Octavio Rico
Hess, Peter Otto
Civitarese, Osvaldo
contents The phenomenology of hadronic states at high energy is well described in the framework of Quantum Chromodynamics. The theory, well established by now, cannot be applied to the description of quark-antiquark states at low energy unless their degrees of freedom are treated as effective ones, a condition resulting from confinement. Own to the similarities with other quantum many-body systems we have adopted a non-perturbative scheme where quarks are treated as quasiparticles, which further interact between them, allowing meson-like states to be described as collective superposition of quasiparticle-pairs. The results of the calculations, performed in the context of the random phase approximation method, show that this scheme is a suitable one to describe meson states up to energies of the order of couple of GeV.
format Preprint
id arxiv_https___arxiv_org_abs_2406_14454
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Collective description of low energy mesonic states
Yepez-Martinez, Tochtli
Trejo, Octavio Rico
Hess, Peter Otto
Civitarese, Osvaldo
High Energy Physics - Phenomenology
The phenomenology of hadronic states at high energy is well described in the framework of Quantum Chromodynamics. The theory, well established by now, cannot be applied to the description of quark-antiquark states at low energy unless their degrees of freedom are treated as effective ones, a condition resulting from confinement. Own to the similarities with other quantum many-body systems we have adopted a non-perturbative scheme where quarks are treated as quasiparticles, which further interact between them, allowing meson-like states to be described as collective superposition of quasiparticle-pairs. The results of the calculations, performed in the context of the random phase approximation method, show that this scheme is a suitable one to describe meson states up to energies of the order of couple of GeV.
title Collective description of low energy mesonic states
topic High Energy Physics - Phenomenology
url https://arxiv.org/abs/2406.14454