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Inclusive Decays of Heavy Quarkonium to Light Particles

We derive the imaginary part of the potential NRQCD Hamiltonian up to order 1/m^4, when the typical momentum transfer between the heavy quarks is of the order of Lambda_{QCD} or greater, and the binding energy E much smaller than Lambda_{QCD}. We use this result to calculate the inclusive decay widt...

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Autores principales: Brambilla, Nora, Eiras, Dolors, Pineda, Antonio, Soto, Joan, Vairo, Antonio
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.67.034018
http://cds.cern.ch/record/574816
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author Brambilla, Nora
Eiras, Dolors
Pineda, Antonio
Soto, Joan
Vairo, Antonio
author_facet Brambilla, Nora
Eiras, Dolors
Pineda, Antonio
Soto, Joan
Vairo, Antonio
author_sort Brambilla, Nora
collection CERN
description We derive the imaginary part of the potential NRQCD Hamiltonian up to order 1/m^4, when the typical momentum transfer between the heavy quarks is of the order of Lambda_{QCD} or greater, and the binding energy E much smaller than Lambda_{QCD}. We use this result to calculate the inclusive decay widths into light hadrons, photons and lepton pairs, up to O(mv^3 x (Lambda_{QCD}^2/m^2,E/m)) and O(mv^5) times a short-distance coefficient, for S- and P-wave heavy quarkonium states, respectively. We achieve a large reduction in the number of unknown non-perturbative parameters and, therefore, we obtain new model-independent QCD predictions. All the NRQCD matrix elements relevant to that order are expressed in terms of the wave functions at the origin and six universal non-perturbative parameters. The wave-function dependence factorizes and drops out in the ratio of hadronic and electromagnetic decay widths. The universal non-perturbative parameters are expressed in terms of gluonic field-strength correlators, which may be fixed by experimental data or, alternatively, by lattice simulations. Our expressions are expected to hold for most of the charmonium and bottomonium states below threshold. The calculations and methodology are explained in detail so that the evaluation of higher order NRQCD matrix elements in this framework should be straightforward. An example is provided.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-5748162023-02-27T03:51:49Zdoi:10.1103/PhysRevD.67.034018http://cds.cern.ch/record/574816engBrambilla, NoraEiras, DolorsPineda, AntonioSoto, JoanVairo, AntonioInclusive Decays of Heavy Quarkonium to Light ParticlesParticle Physics - PhenomenologyWe derive the imaginary part of the potential NRQCD Hamiltonian up to order 1/m^4, when the typical momentum transfer between the heavy quarks is of the order of Lambda_{QCD} or greater, and the binding energy E much smaller than Lambda_{QCD}. We use this result to calculate the inclusive decay widths into light hadrons, photons and lepton pairs, up to O(mv^3 x (Lambda_{QCD}^2/m^2,E/m)) and O(mv^5) times a short-distance coefficient, for S- and P-wave heavy quarkonium states, respectively. We achieve a large reduction in the number of unknown non-perturbative parameters and, therefore, we obtain new model-independent QCD predictions. All the NRQCD matrix elements relevant to that order are expressed in terms of the wave functions at the origin and six universal non-perturbative parameters. The wave-function dependence factorizes and drops out in the ratio of hadronic and electromagnetic decay widths. The universal non-perturbative parameters are expressed in terms of gluonic field-strength correlators, which may be fixed by experimental data or, alternatively, by lattice simulations. Our expressions are expected to hold for most of the charmonium and bottomonium states below threshold. The calculations and methodology are explained in detail so that the evaluation of higher order NRQCD matrix elements in this framework should be straightforward. An example is provided.We derive the imaginary part of the potential NRQCD Hamiltonian up to order 1/m^4, when the typical momentum transfer between the heavy quarks is of the order of Lambda_{QCD} or greater, and the binding energy E much smaller than Lambda_{QCD}. We use this result to calculate the inclusive decay widths into light hadrons, photons and lepton pairs, up to O(mv^3 x (Lambda_{QCD}^2/m^2,E/m)) and O(mv^5) times a short-distance coefficient, for S- and P-wave heavy quarkonium states, respectively. We achieve a large reduction in the number of unknown non-perturbative parameters and, therefore, we obtain new model-independent QCD predictions. All the NRQCD matrix elements relevant to that order are expressed in terms of the wave functions at the origin and six universal non-perturbative parameters. The wave-function dependence factorizes and drops out in the ratio of hadronic and electromagnetic decay widths. The universal non-perturbative parameters are expressed in terms of gluonic field-strength correlators, which may be fixed by experimental data or, alternatively, by lattice simulations. Our expressions are expected to hold for most of the charmonium and bottomonium states below threshold. The calculations and methodology are explained in detail so that the evaluation of higher order NRQCD matrix elements in this framework should be straightforward. An example is provided.hep-ph/0208019CERN-TH-2002-179IFUM-719-FTUB-ECM-PF-02-15CERN-TH-2002-179IFUM-719-FTUB-ECM-PF-2002-15oai:cds.cern.ch:5748162002-08-02
spellingShingle Particle Physics - Phenomenology
Brambilla, Nora
Eiras, Dolors
Pineda, Antonio
Soto, Joan
Vairo, Antonio
Inclusive Decays of Heavy Quarkonium to Light Particles
title Inclusive Decays of Heavy Quarkonium to Light Particles
title_full Inclusive Decays of Heavy Quarkonium to Light Particles
title_fullStr Inclusive Decays of Heavy Quarkonium to Light Particles
title_full_unstemmed Inclusive Decays of Heavy Quarkonium to Light Particles
title_short Inclusive Decays of Heavy Quarkonium to Light Particles
title_sort inclusive decays of heavy quarkonium to light particles
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.67.034018
http://cds.cern.ch/record/574816
work_keys_str_mv AT brambillanora inclusivedecaysofheavyquarkoniumtolightparticles
AT eirasdolors inclusivedecaysofheavyquarkoniumtolightparticles
AT pinedaantonio inclusivedecaysofheavyquarkoniumtolightparticles
AT sotojoan inclusivedecaysofheavyquarkoniumtolightparticles
AT vairoantonio inclusivedecaysofheavyquarkoniumtolightparticles