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Spectroscopy, scaling and critical indices in strongly coupled quenched QED
The interplay of spectroscopy, scaling laws and critical indices is studied in strongly coupled quenched QED. Interpreted as a model of technicolor having strong interactions at short distances, we predict the techni-meson mass spectrum in a simplified model of a dynamically generated top quark mass...
Autores principales: | , , , |
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Lenguaje: | eng |
Publicado: |
1993
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/0550-3213(93)90351-O http://cds.cern.ch/record/238328 |
_version_ | 1780884768992264192 |
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author | Kocic, Aleksandar Kogut, John B. Lombardo, Maria-Paola Wang, K.C. |
author_facet | Kocic, Aleksandar Kogut, John B. Lombardo, Maria-Paola Wang, K.C. |
author_sort | Kocic, Aleksandar |
collection | CERN |
description | The interplay of spectroscopy, scaling laws and critical indices is studied in strongly coupled quenched QED. Interpreted as a model of technicolor having strong interactions at short distances, we predict the techni-meson mass spectrum in a simplified model of a dynamically generated top quark mass $M_f$. Our results support the strict inequality that the techni-sigma mass $M_\sigma$ is less than twice the dynamical quark mass $M_f$, and confirm that the techni-pion is a Nambu-Goldstone boson. The level ordering $0 = M_\pi < M_\sigma < 2M_f < M_\rho < M_{a1} $ is found.An equation of state, and scaling laws are derived for the techni-meson masses by exploiting correlation length scaling. The resulting universality relations are confirmed by simulations on $16^4$, $32\times 16^3$ and $32^4$ lattices. The anomalous dimension $\eta$ is measured to be approximatively $0.50$ in good agreement with past lattice simulations and hyperscaling relations, as well as with the analytic solution of the quenched, planar gauged Nambu-Jona Lasinio model solved by continuum Schwinger-Dyson equation techniques. |
id | cern-238328 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 1993 |
record_format | invenio |
spelling | cern-2383282023-03-30T02:20:50Zdoi:10.1016/0550-3213(93)90351-Ohttp://cds.cern.ch/record/238328engKocic, AleksandarKogut, John B.Lombardo, Maria-PaolaWang, K.C.Spectroscopy, scaling and critical indices in strongly coupled quenched QEDParticle Physics - TheoryParticle Physics - LatticeThe interplay of spectroscopy, scaling laws and critical indices is studied in strongly coupled quenched QED. Interpreted as a model of technicolor having strong interactions at short distances, we predict the techni-meson mass spectrum in a simplified model of a dynamically generated top quark mass $M_f$. Our results support the strict inequality that the techni-sigma mass $M_\sigma$ is less than twice the dynamical quark mass $M_f$, and confirm that the techni-pion is a Nambu-Goldstone boson. The level ordering $0 = M_\pi < M_\sigma < 2M_f < M_\rho < M_{a1} $ is found.An equation of state, and scaling laws are derived for the techni-meson masses by exploiting correlation length scaling. The resulting universality relations are confirmed by simulations on $16^4$, $32\times 16^3$ and $32^4$ lattices. The anomalous dimension $\eta$ is measured to be approximatively $0.50$ in good agreement with past lattice simulations and hyperscaling relations, as well as with the analytic solution of the quenched, planar gauged Nambu-Jona Lasinio model solved by continuum Schwinger-Dyson equation techniques.The interplay of spectroscopy, scaling laws and critical indices is studied in strongly coupled quenched QED. Interpreted as a model of technicolor having strong interactions at short distances, we predict the techni-meson mass spectrum in a simplified model of a dynamically generated top quark mass $M_f$. Our results support the strict inequality that the techni-sigma mass $M_\sigma$ is less than twice the dynamical quark mass $M_f$, and confirm that the techni-pion is a Nambu-Goldstone boson. The level ordering $0 = M_\pi < M_\sigma < 2M_f < M_\rho < M_{a1} $ is found.An equation of state, and scaling laws are derived for the techni-meson masses by exploiting correlation length scaling. The resulting universality relations are confirmed by simulations on $16~4$, $32\times 16~3$ and $32~4$ lattices. The anomalous dimension $\eta$ is measured to be approximatively $0.50$ in good agreement with past lattice simulations and hyperscaling relations, as well as with the analytic solution of the quenched, planar gauged Nambu-Jona Lasinio model solved by continuum Schwinger-Dyson equation techniques.The interplay of spectroscopy, scaling laws and critical indices is studied in strongly coupled quenched QED. Interpreted as a model of technicolor having strong interactions at short distances, we predict the techni-meson mass spectrum in a simplified model of a dynamically generated top quark mass M f . Our results confirm that the techni-pion is a Nambu-Goldstone boson. The level ordering 0 = M π , 2 M f < M ρ is found. An equation of state, and scaling laws are derived for the techni-meson masses by exploiting correlation length scaling. The resulting universality relations are confirmed by simulations on 16 4 , 32 × 16 3 and 32 4 lattices. The anomalous dimension η is measured to be approximately 0.50 in good agreement with past lattice simulations and hyperscaling relations, as well as with the analytic solution of the quenched, planar gauged Nambu-Jona-Lasinio model solved by continuum Schwinger-Dyson equation techniques.hep-lat/9206018CERN-TH-6542-92ILL-TH-92-12ILLINOIS-UNIV-P-92-6-83CERN-TH-6542-92ILL-TH-92-12ILLINOIS-UNIV-P-92-6-83oai:cds.cern.ch:2383281993 |
spellingShingle | Particle Physics - Theory Particle Physics - Lattice Kocic, Aleksandar Kogut, John B. Lombardo, Maria-Paola Wang, K.C. Spectroscopy, scaling and critical indices in strongly coupled quenched QED |
title | Spectroscopy, scaling and critical indices in strongly coupled quenched QED |
title_full | Spectroscopy, scaling and critical indices in strongly coupled quenched QED |
title_fullStr | Spectroscopy, scaling and critical indices in strongly coupled quenched QED |
title_full_unstemmed | Spectroscopy, scaling and critical indices in strongly coupled quenched QED |
title_short | Spectroscopy, scaling and critical indices in strongly coupled quenched QED |
title_sort | spectroscopy, scaling and critical indices in strongly coupled quenched qed |
topic | Particle Physics - Theory Particle Physics - Lattice |
url | https://dx.doi.org/10.1016/0550-3213(93)90351-O http://cds.cern.ch/record/238328 |
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