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Numerical techniques for lattice QCD in the $\epsilon$-regime

In lattice QCD it is possible, in principle, to determine the parameters in the effective chiral lagrangian (including weak interaction couplings) by performing numerical simulations in the $\epsilon$--regime, i.e. at quark masses where the physical extent of the lattice is much smaller than the Com...

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Detalles Bibliográficos
Autores principales: Giusti, Leonardo, Hoelbling, C., Luscher, M., Wittig, H.
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0010-4655(02)00874-3
http://cds.cern.ch/record/595574
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author Giusti, Leonardo
Hoelbling, C.
Luscher, M.
Wittig, H.
author_facet Giusti, Leonardo
Hoelbling, C.
Luscher, M.
Wittig, H.
author_sort Giusti, Leonardo
collection CERN
description In lattice QCD it is possible, in principle, to determine the parameters in the effective chiral lagrangian (including weak interaction couplings) by performing numerical simulations in the $\epsilon$--regime, i.e. at quark masses where the physical extent of the lattice is much smaller than the Compton wave length of the pion. The use of a formulation of the lattice theory that preserves chiral symmetry is attractive in this context, but the numerical implementation of any such approach requires special care in this kinematical situation due to the presence of some very low eigenvalues of the Dirac operator. We discuss a set of techniques (low-mode preconditioning and adapted-precision algorithms in particular) that make such computations numerically safe and more efficient by a large factor.
id cern-595574
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
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spelling cern-5955742023-03-14T18:15:18Zdoi:10.1016/S0010-4655(02)00874-3http://cds.cern.ch/record/595574engGiusti, LeonardoHoelbling, C.Luscher, M.Wittig, H.Numerical techniques for lattice QCD in the $\epsilon$-regimeParticle Physics - LatticeIn lattice QCD it is possible, in principle, to determine the parameters in the effective chiral lagrangian (including weak interaction couplings) by performing numerical simulations in the $\epsilon$--regime, i.e. at quark masses where the physical extent of the lattice is much smaller than the Compton wave length of the pion. The use of a formulation of the lattice theory that preserves chiral symmetry is attractive in this context, but the numerical implementation of any such approach requires special care in this kinematical situation due to the presence of some very low eigenvalues of the Dirac operator. We discuss a set of techniques (low-mode preconditioning and adapted-precision algorithms in particular) that make such computations numerically safe and more efficient by a large factor.In lattice QCD it is possible, in principle, to determine the parameters in the effective chiral lagrangian (including weak interaction couplings) by performing numerical simulations in the $\epsilon$--regime, i.e. at quark masses where the physical extent of the lattice is much smaller than the Compton wave length of the pion. The use of a formulation of the lattice theory that preserves chiral symmetry is attractive in this context, but the numerical implementation of any such approach requires special care in this kinematical situation due to the presence of some very low eigenvalues of the Dirac operator. We discuss a set of techniques (low-mode preconditioning and adapted-precision algorithms in particular) that make such computations numerically safe and more efficient by a large factor.hep-lat/0212012CERN-TH-2002-350DESY-02-212CPT-2002-P-4458CERN-TH-2002-350oai:cds.cern.ch:5955742002-12-06
spellingShingle Particle Physics - Lattice
Giusti, Leonardo
Hoelbling, C.
Luscher, M.
Wittig, H.
Numerical techniques for lattice QCD in the $\epsilon$-regime
title Numerical techniques for lattice QCD in the $\epsilon$-regime
title_full Numerical techniques for lattice QCD in the $\epsilon$-regime
title_fullStr Numerical techniques for lattice QCD in the $\epsilon$-regime
title_full_unstemmed Numerical techniques for lattice QCD in the $\epsilon$-regime
title_short Numerical techniques for lattice QCD in the $\epsilon$-regime
title_sort numerical techniques for lattice qcd in the $\epsilon$-regime
topic Particle Physics - Lattice
url https://dx.doi.org/10.1016/S0010-4655(02)00874-3
http://cds.cern.ch/record/595574
work_keys_str_mv AT giustileonardo numericaltechniquesforlatticeqcdintheepsilonregime
AT hoelblingc numericaltechniquesforlatticeqcdintheepsilonregime
AT luscherm numericaltechniquesforlatticeqcdintheepsilonregime
AT wittigh numericaltechniquesforlatticeqcdintheepsilonregime