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On O(a^2) effects in gradient flow observables

In lattice gauge theories, the gradient flow has been used extensively both, for scale setting and for defining finite volume renormalization schemes for the gauge coupling. Unfortunately, rather large cutoff effects have been observed in some cases. We here investigate these effects to leading orde...

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Detalles Bibliográficos
Autores principales: Sint, Stefan, Ramos, Alberto
Lenguaje:eng
Publicado: SISSA 2014
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.214.0329
http://cds.cern.ch/record/1972219
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author Sint, Stefan
Ramos, Alberto
author_facet Sint, Stefan
Ramos, Alberto
author_sort Sint, Stefan
collection CERN
description In lattice gauge theories, the gradient flow has been used extensively both, for scale setting and for defining finite volume renormalization schemes for the gauge coupling. Unfortunately, rather large cutoff effects have been observed in some cases. We here investigate these effects to leading order in perturbation theory, considering various definitions of the lattice observable, the lattice flow equation and the Yang Mills lattice action. These considerations suggest an improved set- up for which we perform a scaling test in the pure SU(3) gauge theory, demonstrating strongly reduced cutoff effects. We then attempt to obtain a more complete understanding of the structure of O(a^2) effects by applying Symanzik's effective theory approach to the 4+1 dimensional local field theory with flow time as the fifth dimension. From these considerations we are led to a fully O(a^2) improved set-up the study of which is left to future work.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
publisher SISSA
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spelling cern-19722192023-03-14T19:43:11Zdoi:10.22323/1.214.0329http://cds.cern.ch/record/1972219engSint, StefanRamos, AlbertoOn O(a^2) effects in gradient flow observablesParticle Physics - LatticeIn lattice gauge theories, the gradient flow has been used extensively both, for scale setting and for defining finite volume renormalization schemes for the gauge coupling. Unfortunately, rather large cutoff effects have been observed in some cases. We here investigate these effects to leading order in perturbation theory, considering various definitions of the lattice observable, the lattice flow equation and the Yang Mills lattice action. These considerations suggest an improved set- up for which we perform a scaling test in the pure SU(3) gauge theory, demonstrating strongly reduced cutoff effects. We then attempt to obtain a more complete understanding of the structure of O(a^2) effects by applying Symanzik's effective theory approach to the 4+1 dimensional local field theory with flow time as the fifth dimension. From these considerations we are led to a fully O(a^2) improved set-up the study of which is left to future work.In lattice gauge theories, the gradient flow has been used extensively both, for scale setting and for defining finite volume renormalization schemes for the gauge coupling. Unfortunately, rather large cutoff effects have been observed in some cases. We here investigate these effects to leading order in perturbation theory, considering various definitions of the lattice observable, the lattice flow equation and the Yang Mills lattice action. These considerations suggest an improved set- up for which we perform a scaling test in the pure SU(3) gauge theory, demonstrating strongly reduced cutoff effects. We then attempt to obtain a more complete understanding of the structure of O($a^2$) effects by applying Symanzik's effective theory approach to the 4+1 dimensional local field theory with flow time as the fifth dimension. From these considerations we are led to a fully O($a^2$) improved set-up the study of which is left to future work.SISSAarXiv:1411.6706DESY-14-202CERN-PH-TH-2014-214TCDMATH-14-09DESY 14-202CERN-PH-TH-2014-214oai:cds.cern.ch:19722192014-11-24
spellingShingle Particle Physics - Lattice
Sint, Stefan
Ramos, Alberto
On O(a^2) effects in gradient flow observables
title On O(a^2) effects in gradient flow observables
title_full On O(a^2) effects in gradient flow observables
title_fullStr On O(a^2) effects in gradient flow observables
title_full_unstemmed On O(a^2) effects in gradient flow observables
title_short On O(a^2) effects in gradient flow observables
title_sort on o(a^2) effects in gradient flow observables
topic Particle Physics - Lattice
url https://dx.doi.org/10.22323/1.214.0329
http://cds.cern.ch/record/1972219
work_keys_str_mv AT sintstefan onoa2effectsingradientflowobservables
AT ramosalberto onoa2effectsingradientflowobservables