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Exponential noise reduction in Lattice QCD: new tools for new physics

<!--HTML--><p>The numerical computations of many quantities of theoretical and phenomenological interest are plagued by statistical errors which increase exponentially with the distance of the sources in the relevant correlators. Notable examples are baryon masses and matrix elements, th...

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Autor principal: Giusti, Leonardo
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:http://cds.cern.ch/record/2284167
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author Giusti, Leonardo
author_facet Giusti, Leonardo
author_sort Giusti, Leonardo
collection CERN
description <!--HTML--><p>The numerical computations of many quantities of theoretical and phenomenological interest are plagued by statistical errors which increase exponentially with the distance of the sources in the relevant correlators. Notable examples are baryon masses and matrix elements, the hadronic vacuum polarization and the light-by-light scattering contributions to the muon g-2, and the form factors of semileptonic B decays. Reliable and precise determinations of these quantities are very difficult if not impractical with state-of-the-art standard Monte Carlo integration schemes. I will discuss a recent proposal for factorizing the fermion determinant in lattice QCD that leads to a local action in the gauge field and in the auxiliary boson fields. Once combined with the corresponding factorization of the quark propagator, it paves the way for multi-level Monte Carlo integration in the presence of fermions opening new perspectives in lattice QCD and in its capability to unveil new physics. Exploratory results on the impact on the above mentioned observables will be presented.</p>
id cern-2284167
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-22841672022-11-02T22:20:59Zhttp://cds.cern.ch/record/2284167engGiusti, LeonardoExponential noise reduction in Lattice QCD: new tools for new physicsExponential noise reduction in Lattice QCD: new tools for new physicsTheory Colloquium<!--HTML--><p>The numerical computations of many quantities of theoretical and phenomenological interest are plagued by statistical errors which increase exponentially with the distance of the sources in the relevant correlators. Notable examples are baryon masses and matrix elements, the hadronic vacuum polarization and the light-by-light scattering contributions to the muon g-2, and the form factors of semileptonic B decays. Reliable and precise determinations of these quantities are very difficult if not impractical with state-of-the-art standard Monte Carlo integration schemes. I will discuss a recent proposal for factorizing the fermion determinant in lattice QCD that leads to a local action in the gauge field and in the auxiliary boson fields. Once combined with the corresponding factorization of the quark propagator, it paves the way for multi-level Monte Carlo integration in the presence of fermions opening new perspectives in lattice QCD and in its capability to unveil new physics. Exploratory results on the impact on the above mentioned observables will be presented.</p>oai:cds.cern.ch:22841672017
spellingShingle Theory Colloquium
Giusti, Leonardo
Exponential noise reduction in Lattice QCD: new tools for new physics
title Exponential noise reduction in Lattice QCD: new tools for new physics
title_full Exponential noise reduction in Lattice QCD: new tools for new physics
title_fullStr Exponential noise reduction in Lattice QCD: new tools for new physics
title_full_unstemmed Exponential noise reduction in Lattice QCD: new tools for new physics
title_short Exponential noise reduction in Lattice QCD: new tools for new physics
title_sort exponential noise reduction in lattice qcd: new tools for new physics
topic Theory Colloquium
url http://cds.cern.ch/record/2284167
work_keys_str_mv AT giustileonardo exponentialnoisereductioninlatticeqcdnewtoolsfornewphysics