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Main Authors: Garnacho-Velasco, Eduardo, Bicudo, Pedro J. de A., Ribeiro, J. Emilio F. T., Llanes-Estrada, Felipe J., Molina, Lucas Pérez, Herreros, Victor Serrano, Fernández, Jorge Vallejo
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2404.14898
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author Garnacho-Velasco, Eduardo
Bicudo, Pedro J. de A.
Ribeiro, J. Emilio F. T.
Llanes-Estrada, Felipe J.
Molina, Lucas Pérez
Herreros, Victor Serrano
Fernández, Jorge Vallejo
author_facet Garnacho-Velasco, Eduardo
Bicudo, Pedro J. de A.
Ribeiro, J. Emilio F. T.
Llanes-Estrada, Felipe J.
Molina, Lucas Pérez
Herreros, Victor Serrano
Fernández, Jorge Vallejo
contents We present a detailed study of the Bardeen-Cooper-Schrieffer (BCS) gap equation ``replicae'' or excited vacuum states, orthogonal to the ground-state one, in the chiral-quark sector of the Hamiltonian Coulomb-gauge model of chromodynamics. Analyzing the number of negative eigenmodes of the energy density's Hessian we believe that we have identified all of the (negative energy-density) vacua of this nonlinear system, namely the ground BCS state and two (or one) replicae for slightly massive (or massless) quarks, given the interaction strength typical of the strong interactions. The meson spectrum over each of the replicae looks similar, so the differences are not significant enough given model uncertainties, but matrix elements are more sensitive and allow to distinguish them. We propose to look for such excited vacua in lattice gauge theory by trying to identify excitations with scalar quantum numbers which have energies proportional to the lattice volume (unlike conventional mesons for which the mass stabilizes to a constant upon taking the infinite volume limit).
format Preprint
id arxiv_https___arxiv_org_abs_2404_14898
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Chiral-vacuum excited replicae in QCD modeling
Garnacho-Velasco, Eduardo
Bicudo, Pedro J. de A.
Ribeiro, J. Emilio F. T.
Llanes-Estrada, Felipe J.
Molina, Lucas Pérez
Herreros, Victor Serrano
Fernández, Jorge Vallejo
High Energy Physics - Phenomenology
High Energy Physics - Lattice
We present a detailed study of the Bardeen-Cooper-Schrieffer (BCS) gap equation ``replicae'' or excited vacuum states, orthogonal to the ground-state one, in the chiral-quark sector of the Hamiltonian Coulomb-gauge model of chromodynamics. Analyzing the number of negative eigenmodes of the energy density's Hessian we believe that we have identified all of the (negative energy-density) vacua of this nonlinear system, namely the ground BCS state and two (or one) replicae for slightly massive (or massless) quarks, given the interaction strength typical of the strong interactions. The meson spectrum over each of the replicae looks similar, so the differences are not significant enough given model uncertainties, but matrix elements are more sensitive and allow to distinguish them. We propose to look for such excited vacua in lattice gauge theory by trying to identify excitations with scalar quantum numbers which have energies proportional to the lattice volume (unlike conventional mesons for which the mass stabilizes to a constant upon taking the infinite volume limit).
title Chiral-vacuum excited replicae in QCD modeling
topic High Energy Physics - Phenomenology
High Energy Physics - Lattice
url https://arxiv.org/abs/2404.14898