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Physical and cut-off effects of heavy sea quarks

We simulate a theory with two dynamical O($a$) improved Wilson quarks whose mass $M$ ranges from a factor eight up to a factor two below the charm quark mass and at three values of the lattice spacing ranging from 0.066 to 0.034 fm. This theory is a prototype to study the decoupling of heavy quarks....

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Autores principales: Knechtli, Francesco, Finkenrath, Jacob, Leder, Björn, Athenodorou, Andreas, Bruno, Mattia, Sommer, Rainer, Marinkovic, Marina
Lenguaje:eng
Publicado: SISSA 2014
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.214.0288
http://cds.cern.ch/record/1967242
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author Knechtli, Francesco
Finkenrath, Jacob
Leder, Björn
Athenodorou, Andreas
Bruno, Mattia
Sommer, Rainer
Marinkovic, Marina
author_facet Knechtli, Francesco
Finkenrath, Jacob
Leder, Björn
Athenodorou, Andreas
Bruno, Mattia
Sommer, Rainer
Marinkovic, Marina
author_sort Knechtli, Francesco
collection CERN
description We simulate a theory with two dynamical O($a$) improved Wilson quarks whose mass $M$ ranges from a factor eight up to a factor two below the charm quark mass and at three values of the lattice spacing ranging from 0.066 to 0.034 fm. This theory is a prototype to study the decoupling of heavy quarks. We measure the mass and cut-off dependence of ratios of gluonic observables defined from the Wilson flow or the static potential. The size of the 1/$M$ corrections can be determined and disentangled from the lattice artifacts. The difference with the pure gauge theory is at the percent level when two quarks with a mass of the charm quark are present.
id cern-1967242
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
publisher SISSA
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spelling cern-19672422023-03-14T18:27:51Zdoi:10.22323/1.214.0288http://cds.cern.ch/record/1967242engKnechtli, FrancescoFinkenrath, JacobLeder, BjörnAthenodorou, AndreasBruno, MattiaSommer, RainerMarinkovic, MarinaPhysical and cut-off effects of heavy sea quarksParticle Physics - LatticeWe simulate a theory with two dynamical O($a$) improved Wilson quarks whose mass $M$ ranges from a factor eight up to a factor two below the charm quark mass and at three values of the lattice spacing ranging from 0.066 to 0.034 fm. This theory is a prototype to study the decoupling of heavy quarks. We measure the mass and cut-off dependence of ratios of gluonic observables defined from the Wilson flow or the static potential. The size of the 1/$M$ corrections can be determined and disentangled from the lattice artifacts. The difference with the pure gauge theory is at the percent level when two quarks with a mass of the charm quark are present.We simulate a theory with two dynamical O($a$) improved Wilson quarks whose mass $M$ ranges from a factor eight up to a factor two below the charm quark mass and at three values of the lattice spacing ranging from 0.066 to 0.034 fm. This theory is a prototype to study the decoupling of heavy quarks. We measure the mass and cut-off dependence of ratios of gluonic observables defined from the Wilson flow or the static potential. The size of the 1/$M$ corrections can be determined and disentangled from the lattice artifacts. The difference with the pure gauge theory is at the percent level when two quarks with a mass of the charm quark are present.SISSAarXiv:1411.1239WUP-14-14DESY-14-209SFB-CPP-14-86CERN-PH-TH-2014-215WUP 14-14DESY 14-209SFB-CPP-14-86CERN-PH-TH-2014-215oai:cds.cern.ch:19672422014-11-05
spellingShingle Particle Physics - Lattice
Knechtli, Francesco
Finkenrath, Jacob
Leder, Björn
Athenodorou, Andreas
Bruno, Mattia
Sommer, Rainer
Marinkovic, Marina
Physical and cut-off effects of heavy sea quarks
title Physical and cut-off effects of heavy sea quarks
title_full Physical and cut-off effects of heavy sea quarks
title_fullStr Physical and cut-off effects of heavy sea quarks
title_full_unstemmed Physical and cut-off effects of heavy sea quarks
title_short Physical and cut-off effects of heavy sea quarks
title_sort physical and cut-off effects of heavy sea quarks
topic Particle Physics - Lattice
url https://dx.doi.org/10.22323/1.214.0288
http://cds.cern.ch/record/1967242
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