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Universality and the approach to the continuum limit in lattice gauge theory

The universality of the continuum limit and the applicability of renormalized perturbation theory are tested in the SU(2) lattice gauge theory by computing two different non-perturbatively defined running couplings over a large range of energies. The lattice data (which were generated on the powerfu...

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Autores principales: De Divitiis, G M, Frezzotti, R, Guagnelli, M, Lüscher, Martin, Petronzio, Roberto, Sommer, Rainer, Weisz, P, Wolff, U
Lenguaje:eng
Publicado: 1994
Materias:
Acceso en línea:https://dx.doi.org/10.1016/0550-3213(94)00019-B
http://cds.cern.ch/record/271823
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author De Divitiis, G M
Frezzotti, R
Guagnelli, M
Lüscher, Martin
Petronzio, Roberto
Sommer, Rainer
Weisz, P
Wolff, U
author_facet De Divitiis, G M
Frezzotti, R
Guagnelli, M
Lüscher, Martin
Petronzio, Roberto
Sommer, Rainer
Weisz, P
Wolff, U
author_sort De Divitiis, G M
collection CERN
description The universality of the continuum limit and the applicability of renormalized perturbation theory are tested in the SU(2) lattice gauge theory by computing two different non-perturbatively defined running couplings over a large range of energies. The lattice data (which were generated on the powerful APE computers at Rome II and DESY) are extrapolated to the continuum limit by simulating sequences of lattices with decreasing spacings. Our results confirm the expected universality at all energies to a precision of a few percent. We find, however, that perturbation theory must be used with care when matching different renormalized couplings at high energies.
id cern-271823
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1994
record_format invenio
spelling cern-2718232019-09-30T06:29:59Zdoi:10.1016/0550-3213(94)00019-Bhttp://cds.cern.ch/record/271823engDe Divitiis, G MFrezzotti, RGuagnelli, MLüscher, MartinPetronzio, RobertoSommer, RainerWeisz, PWolff, UUniversality and the approach to the continuum limit in lattice gauge theoryParticle Physics - LatticeThe universality of the continuum limit and the applicability of renormalized perturbation theory are tested in the SU(2) lattice gauge theory by computing two different non-perturbatively defined running couplings over a large range of energies. The lattice data (which were generated on the powerful APE computers at Rome II and DESY) are extrapolated to the continuum limit by simulating sequences of lattices with decreasing spacings. Our results confirm the expected universality at all energies to a precision of a few percent. We find, however, that perturbation theory must be used with care when matching different renormalized couplings at high energies.hep-lat/9411017DESY-94-196HUB-IEP-94-16ROM-2F-94-46CERN-TH-7447-94oai:cds.cern.ch:2718231994-11-09
spellingShingle Particle Physics - Lattice
De Divitiis, G M
Frezzotti, R
Guagnelli, M
Lüscher, Martin
Petronzio, Roberto
Sommer, Rainer
Weisz, P
Wolff, U
Universality and the approach to the continuum limit in lattice gauge theory
title Universality and the approach to the continuum limit in lattice gauge theory
title_full Universality and the approach to the continuum limit in lattice gauge theory
title_fullStr Universality and the approach to the continuum limit in lattice gauge theory
title_full_unstemmed Universality and the approach to the continuum limit in lattice gauge theory
title_short Universality and the approach to the continuum limit in lattice gauge theory
title_sort universality and the approach to the continuum limit in lattice gauge theory
topic Particle Physics - Lattice
url https://dx.doi.org/10.1016/0550-3213(94)00019-B
http://cds.cern.ch/record/271823
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