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QCD at Zero Baryon Density and the Polyakov Loop Paradox

We compare the grand canonical partition function at fixed chemical potential mu with the canonical partition function at fixed baryon number B, formally and by numerical simulations at mu=0 and B=0 with four flavours of staggered quarks. We verify that the free energy densities are equal in the the...

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Detalles Bibliográficos
Autores principales: Kratochvila, S, De Forcrand, Philippe
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.73.114512
http://cds.cern.ch/record/926428
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author Kratochvila, S
De Forcrand, Philippe
author_facet Kratochvila, S
De Forcrand, Philippe
author_sort Kratochvila, S
collection CERN
description We compare the grand canonical partition function at fixed chemical potential mu with the canonical partition function at fixed baryon number B, formally and by numerical simulations at mu=0 and B=0 with four flavours of staggered quarks. We verify that the free energy densities are equal in the thermodynamic limit, and show that they can be well described by the hadron resonance gas at T < T_c and by the free fermion gas at T>T_c. Small differences between the two ensembles, for thermodynamic observables characterising the deconfinement phase transition, vanish with increasing lattice size. These differences are solely caused by contributions of non-zero baryon density sectors, which are exponentially suppressed with increasing volume. The Polyakov loop shows a different behaviour: for all temperatures and volumes, its expectation value is exactly zero in the canonical formulation, whereas it is always non-zero in the commonly used grand-canonical formulation. We clarify this paradoxical difference, and show that the non-vanishing Polyakov loop expectation value is due to contributions of non-zero triality states, which are not physical, because they give zero contribution to the partition function.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
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spelling cern-9264282019-09-30T06:29:59Zdoi:10.1103/PhysRevD.73.114512http://cds.cern.ch/record/926428engKratochvila, SDe Forcrand, PhilippeQCD at Zero Baryon Density and the Polyakov Loop ParadoxParticle Physics - LatticeWe compare the grand canonical partition function at fixed chemical potential mu with the canonical partition function at fixed baryon number B, formally and by numerical simulations at mu=0 and B=0 with four flavours of staggered quarks. We verify that the free energy densities are equal in the thermodynamic limit, and show that they can be well described by the hadron resonance gas at T < T_c and by the free fermion gas at T>T_c. Small differences between the two ensembles, for thermodynamic observables characterising the deconfinement phase transition, vanish with increasing lattice size. These differences are solely caused by contributions of non-zero baryon density sectors, which are exponentially suppressed with increasing volume. The Polyakov loop shows a different behaviour: for all temperatures and volumes, its expectation value is exactly zero in the canonical formulation, whereas it is always non-zero in the commonly used grand-canonical formulation. We clarify this paradoxical difference, and show that the non-vanishing Polyakov loop expectation value is due to contributions of non-zero triality states, which are not physical, because they give zero contribution to the partition function.hep-lat/0602005CERN-PH-TH-2006-007oai:cds.cern.ch:9264282006-02-02
spellingShingle Particle Physics - Lattice
Kratochvila, S
De Forcrand, Philippe
QCD at Zero Baryon Density and the Polyakov Loop Paradox
title QCD at Zero Baryon Density and the Polyakov Loop Paradox
title_full QCD at Zero Baryon Density and the Polyakov Loop Paradox
title_fullStr QCD at Zero Baryon Density and the Polyakov Loop Paradox
title_full_unstemmed QCD at Zero Baryon Density and the Polyakov Loop Paradox
title_short QCD at Zero Baryon Density and the Polyakov Loop Paradox
title_sort qcd at zero baryon density and the polyakov loop paradox
topic Particle Physics - Lattice
url https://dx.doi.org/10.1103/PhysRevD.73.114512
http://cds.cern.ch/record/926428
work_keys_str_mv AT kratochvilas qcdatzerobaryondensityandthepolyakovloopparadox
AT deforcrandphilippe qcdatzerobaryondensityandthepolyakovloopparadox