Cargando…

Real photon emissions leptonic decays

We present a non-perturbative calculation of the form factors which contribute to the amplitudes for the radiative decays $P\to \ell \bar \nu_\ell \gamma$, where $P$ is a pseudoscalar meson and $\ell$ is a charged lepton. Together with the non-perturbative determination of the virtual photon correct...

Descripción completa

Detalles Bibliográficos
Autores principales: Martinelli, Guido, Di Carlo, M, Mazzetti, F, de Divitiis, G M  , Desiderio, A, Frezzotti, R, Garofalo, M, Hansen, M, Tantalo, N, Giusti, D, Lubicz, V, Sachrajda, C T, Sanfilippo, F, Simula, S
Lenguaje:eng
Publicado: SISSA 2019
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.363.0198
http://cds.cern.ch/record/2745004
_version_ 1780968697190416384
author Martinelli, Guido
Di Carlo, M
Mazzetti, F
de Divitiis, G M  
Desiderio, A
Frezzotti, R
Garofalo, M
Hansen, M
Tantalo, N
Giusti, D
Lubicz, V
Sachrajda, C T
Sanfilippo, F
Simula, S
author_facet Martinelli, Guido
Di Carlo, M
Mazzetti, F
de Divitiis, G M  
Desiderio, A
Frezzotti, R
Garofalo, M
Hansen, M
Tantalo, N
Giusti, D
Lubicz, V
Sachrajda, C T
Sanfilippo, F
Simula, S
author_sort Martinelli, Guido
collection CERN
description We present a non-perturbative calculation of the form factors which contribute to the amplitudes for the radiative decays $P\to \ell \bar \nu_\ell \gamma$, where $P$ is a pseudoscalar meson and $\ell$ is a charged lepton. Together with the non-perturbative determination of the virtual photon corrections to the processes $P\to \ell \bar \nu_\ell$, this will allow accurate predictions to be made at $O(\alpha_{em})$ for leptonic decay rates for pseudoscalar mesons ranging from the pion to the $B$ meson. We are able to separate unambiguously the point-like contribution, the square of which leads to the infrared divergence in the decay rate, from the structure dependent, infrared-safe, terms in the amplitude. The fully non-perturbative, $O(a)$ improved calculation of the inclusive leptonic decay rates will lead to significantly improved precision in the determination of the corresponding Cabibbo-Kobayashi-Maskawa (CKM) matrix elements. Precise predictions for the emission of a hard photon are also very interesting, especially for the decays of heavy $D$ and $B$ mesons for which currently only model-dependent predictions are available to compare with existing experimental data.
id oai-inspirehep.net-1814170
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
publisher SISSA
record_format invenio
spelling oai-inspirehep.net-18141702021-02-10T22:46:04Zdoi:10.22323/1.363.0198http://cds.cern.ch/record/2745004engMartinelli, GuidoDi Carlo, MMazzetti, Fde Divitiis, G M  Desiderio, AFrezzotti, RGarofalo, MHansen, MTantalo, NGiusti, DLubicz, VSachrajda, C TSanfilippo, FSimula, SReal photon emissions leptonic decaysParticle Physics - LatticeWe present a non-perturbative calculation of the form factors which contribute to the amplitudes for the radiative decays $P\to \ell \bar \nu_\ell \gamma$, where $P$ is a pseudoscalar meson and $\ell$ is a charged lepton. Together with the non-perturbative determination of the virtual photon corrections to the processes $P\to \ell \bar \nu_\ell$, this will allow accurate predictions to be made at $O(\alpha_{em})$ for leptonic decay rates for pseudoscalar mesons ranging from the pion to the $B$ meson. We are able to separate unambiguously the point-like contribution, the square of which leads to the infrared divergence in the decay rate, from the structure dependent, infrared-safe, terms in the amplitude. The fully non-perturbative, $O(a)$ improved calculation of the inclusive leptonic decay rates will lead to significantly improved precision in the determination of the corresponding Cabibbo-Kobayashi-Maskawa (CKM) matrix elements. Precise predictions for the emission of a hard photon are also very interesting, especially for the decays of heavy $D$ and $B$ mesons for which currently only model-dependent predictions are available to compare with existing experimental data.SISSAoai:inspirehep.net:18141702019
spellingShingle Particle Physics - Lattice
Martinelli, Guido
Di Carlo, M
Mazzetti, F
de Divitiis, G M  
Desiderio, A
Frezzotti, R
Garofalo, M
Hansen, M
Tantalo, N
Giusti, D
Lubicz, V
Sachrajda, C T
Sanfilippo, F
Simula, S
Real photon emissions leptonic decays
title Real photon emissions leptonic decays
title_full Real photon emissions leptonic decays
title_fullStr Real photon emissions leptonic decays
title_full_unstemmed Real photon emissions leptonic decays
title_short Real photon emissions leptonic decays
title_sort real photon emissions leptonic decays
topic Particle Physics - Lattice
url https://dx.doi.org/10.22323/1.363.0198
http://cds.cern.ch/record/2745004
work_keys_str_mv AT martinelliguido realphotonemissionsleptonicdecays
AT dicarlom realphotonemissionsleptonicdecays
AT mazzettif realphotonemissionsleptonicdecays
AT dedivitiisgm realphotonemissionsleptonicdecays
AT desiderioa realphotonemissionsleptonicdecays
AT frezzottir realphotonemissionsleptonicdecays
AT garofalom realphotonemissionsleptonicdecays
AT hansenm realphotonemissionsleptonicdecays
AT tantalon realphotonemissionsleptonicdecays
AT giustid realphotonemissionsleptonicdecays
AT lubiczv realphotonemissionsleptonicdecays
AT sachrajdact realphotonemissionsleptonicdecays
AT sanfilippof realphotonemissionsleptonicdecays
AT simulas realphotonemissionsleptonicdecays