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Finite-volume matrix elements of two-body states

In this talk, we present a framework for studying structural information of resonances and bound states coupling to two-hadron scattering states. This makes use of a recently proposed finite volume formalism to determine a class of observables that are experimentally inaccessible but can be accessed...

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Detalles Bibliográficos
Autores principales: Baroni, Alessandro, Briceño, Raúl A., Hansen, Maxwell T., Ortega-Gama, Felipe G.
Lenguaje:eng
Publicado: SISSA 2018
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.334.0075
http://cds.cern.ch/record/2647769
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author Baroni, Alessandro
Briceño, Raúl A.
Hansen, Maxwell T.
Ortega-Gama, Felipe G.
author_facet Baroni, Alessandro
Briceño, Raúl A.
Hansen, Maxwell T.
Ortega-Gama, Felipe G.
author_sort Baroni, Alessandro
collection CERN
description In this talk, we present a framework for studying structural information of resonances and bound states coupling to two-hadron scattering states. This makes use of a recently proposed finite volume formalism to determine a class of observables that are experimentally inaccessible but can be accessed via lattice QCD. In particular, we shown that finite-volume two-body matrix elements with one current insertion can be directly related to scattering amplitudes coupling to the external current. For two-hadron systems with resonances or bound states, one can extract the corresponding form factors of these from the energy-dependence of the amplitudes.
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institution Organización Europea para la Investigación Nuclear
language eng
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spelling cern-26477692023-03-14T16:39:09Zdoi:10.22323/1.334.0075http://cds.cern.ch/record/2647769engBaroni, AlessandroBriceño, Raúl A.Hansen, Maxwell T.Ortega-Gama, Felipe G.Finite-volume matrix elements of two-body stateshep-latParticle Physics - LatticeIn this talk, we present a framework for studying structural information of resonances and bound states coupling to two-hadron scattering states. This makes use of a recently proposed finite volume formalism to determine a class of observables that are experimentally inaccessible but can be accessed via lattice QCD. In particular, we shown that finite-volume two-body matrix elements with one current insertion can be directly related to scattering amplitudes coupling to the external current. For two-hadron systems with resonances or bound states, one can extract the corresponding form factors of these from the energy-dependence of the amplitudes.In this talk, we present a framework for studying structural information of resonances and bound states coupling to two-hadron scattering states. This makes use of a recently proposed finite-volume formalism to determine a class of observables that are experimentally inaccessible but can be accessed via lattice QCD. In particular, we shown that finite-volume two-body matrix elements with one current insertion can be directly related to scattering amplitudes coupling to the external current. For two-hadron systems with resonances or bound states, one can extract the corresponding form factors of these from the energy-dependence of the amplitudes.SISSAarXiv:1811.00368JLAB-THY-19-2848oai:cds.cern.ch:26477692018-11-01
spellingShingle hep-lat
Particle Physics - Lattice
Baroni, Alessandro
Briceño, Raúl A.
Hansen, Maxwell T.
Ortega-Gama, Felipe G.
Finite-volume matrix elements of two-body states
title Finite-volume matrix elements of two-body states
title_full Finite-volume matrix elements of two-body states
title_fullStr Finite-volume matrix elements of two-body states
title_full_unstemmed Finite-volume matrix elements of two-body states
title_short Finite-volume matrix elements of two-body states
title_sort finite-volume matrix elements of two-body states
topic hep-lat
Particle Physics - Lattice
url https://dx.doi.org/10.22323/1.334.0075
http://cds.cern.ch/record/2647769
work_keys_str_mv AT baronialessandro finitevolumematrixelementsoftwobodystates
AT bricenoraula finitevolumematrixelementsoftwobodystates
AT hansenmaxwellt finitevolumematrixelementsoftwobodystates
AT ortegagamafelipeg finitevolumematrixelementsoftwobodystates