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Charged hadrons in local finite-volume QED+QCD with C* boundary conditions

In order to calculate QED corrections to hadronic physical quantities by means of lattice simulations, a coherent description of electrically-charged states in finite volume is needed. In the usual periodic setup, Gauss's law and large gauge transformations forbid the propagation of electricall...

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Autores principales: Lucini, Biagio, Patella, Agostino, Ramos, Alberto, Tantalo, Nazario
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP02(2016)076
http://cds.cern.ch/record/2049661
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author Lucini, Biagio
Patella, Agostino
Ramos, Alberto
Tantalo, Nazario
author_facet Lucini, Biagio
Patella, Agostino
Ramos, Alberto
Tantalo, Nazario
author_sort Lucini, Biagio
collection CERN
description In order to calculate QED corrections to hadronic physical quantities by means of lattice simulations, a coherent description of electrically-charged states in finite volume is needed. In the usual periodic setup, Gauss's law and large gauge transformations forbid the propagation of electrically-charged states. A possible solution to this problem, which does not violate the axioms of local quantum field theory, has been proposed by Wiese and Polley, and is based on the use of C* boundary conditions. We present a thorough analysis of the properties and symmetries of QED in isolation and QED coupled to QCD, with C* boundary conditions. In particular we learn that a certain class of electrically-charged states can be constructed in this setup in a fully consistent fashion, without relying on gauge fixing. We argue that this class of states covers most of the interesting phenomenological applications in the framework of numerical simulations. We also calculate finite-volume corrections to the mass of stable charged particles and show that these are much smaller than in non-local formulations of QED.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20496612023-10-04T08:17:03Zdoi:10.1007/JHEP02(2016)076http://cds.cern.ch/record/2049661engLucini, BiagioPatella, AgostinoRamos, AlbertoTantalo, NazarioCharged hadrons in local finite-volume QED+QCD with C* boundary conditionsParticle Physics - TheoryIn order to calculate QED corrections to hadronic physical quantities by means of lattice simulations, a coherent description of electrically-charged states in finite volume is needed. In the usual periodic setup, Gauss's law and large gauge transformations forbid the propagation of electrically-charged states. A possible solution to this problem, which does not violate the axioms of local quantum field theory, has been proposed by Wiese and Polley, and is based on the use of C* boundary conditions. We present a thorough analysis of the properties and symmetries of QED in isolation and QED coupled to QCD, with C* boundary conditions. In particular we learn that a certain class of electrically-charged states can be constructed in this setup in a fully consistent fashion, without relying on gauge fixing. We argue that this class of states covers most of the interesting phenomenological applications in the framework of numerical simulations. We also calculate finite-volume corrections to the mass of stable charged particles and show that these are much smaller than in non-local formulations of QED.In order to calculate QED corrections to hadronic physical quantities by means of lattice simulations, a coherent description of electrically-charged states in finite volume is needed. In the usual periodic setup, Gauss’s law and large gauge transformations forbid the propagation of electrically-charged states. A possible solution to this problem, which does not violate the axioms of local quantum field theory, has been proposed by Wiese and Polley, and is based on the use of C$^{⋆}$ boundary conditions. We present a thorough analysis of the properties and symmetries of QED in isolation and QED coupled to QCD, with C$^{⋆}$ boundary conditions. In particular we learn that a certain class of electrically-charged states can be constructed in a fully consistent fashion without relying on gauge fixing and without peculiar complications. This class includes single particle states of most stable hadrons. We also calculate finite-volume corrections to the mass of stable charged particles and show that these are much smaller than in non-local formulations of QED.In order to calculate QED corrections to hadronic physical quantities by means of lattice simulations, a coherent description of electrically-charged states in finite volume is needed. In the usual periodic setup, Gauss's law and large gauge transformations forbid the propagation of electrically-charged states. A possible solution to this problem, which does not violate the axioms of local quantum field theory, has been proposed by Wiese and Polley, and is based on the use of C* boundary conditions. We present a thorough analysis of the properties and symmetries of QED in isolation and QED coupled to QCD, with C* boundary conditions. In particular we learn that a certain class of electrically-charged states can be constructed in this setup in a fully consistent fashion, without relying on gauge fixing. We argue that this class of states covers most of the interesting phenomenological applications in the framework of numerical simulations. We also calculate finite-volume corrections to the mass of stable charged particles and show that these are much smaller than in non-local formulations of QED.arXiv:1509.01636CERN-PH-TH-2015-166CERN-PH-TH-2015-166oai:cds.cern.ch:20496612015-09-04
spellingShingle Particle Physics - Theory
Lucini, Biagio
Patella, Agostino
Ramos, Alberto
Tantalo, Nazario
Charged hadrons in local finite-volume QED+QCD with C* boundary conditions
title Charged hadrons in local finite-volume QED+QCD with C* boundary conditions
title_full Charged hadrons in local finite-volume QED+QCD with C* boundary conditions
title_fullStr Charged hadrons in local finite-volume QED+QCD with C* boundary conditions
title_full_unstemmed Charged hadrons in local finite-volume QED+QCD with C* boundary conditions
title_short Charged hadrons in local finite-volume QED+QCD with C* boundary conditions
title_sort charged hadrons in local finite-volume qed+qcd with c* boundary conditions
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP02(2016)076
http://cds.cern.ch/record/2049661
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AT patellaagostino chargedhadronsinlocalfinitevolumeqedqcdwithcboundaryconditions
AT ramosalberto chargedhadronsinlocalfinitevolumeqedqcdwithcboundaryconditions
AT tantalonazario chargedhadronsinlocalfinitevolumeqedqcdwithcboundaryconditions