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NNLO QCD corrections to the $B\to X_s \gamma$ matrix elements using interpolation in $m_c$

One of the most troublesome contributions to the NNLO QCD corrections to B -> X_s gamma originates from three-loop matrix elements of four-quark operators. A part of this contribution that is proportional to the QCD beta-function coefficient beta_0 was found in 2003 as an expansion in m_c/m_b. In...

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Detalles Bibliográficos
Autores principales: Misiak, M, Steinhauser, M
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nuclphysb.2006.11.027
http://cds.cern.ch/record/985391
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author Misiak, M
Steinhauser, M
author_facet Misiak, M
Steinhauser, M
author_sort Misiak, M
collection CERN
description One of the most troublesome contributions to the NNLO QCD corrections to B -> X_s gamma originates from three-loop matrix elements of four-quark operators. A part of this contribution that is proportional to the QCD beta-function coefficient beta_0 was found in 2003 as an expansion in m_c/m_b. In the present paper, we evaluate the asymptotic behaviour of the complete contribution for m_c >> m_b/2. The asymptotic form of the beta_0-part matches the small-m_c expansion very well at the threshold m_c = m_b/2. For the remaining part, we perform an interpolation down to the measured value of m_c, assuming that the beta_0-part is a good approximation at m_c=0. Combining our results with other contributions to the NNLO QCD corrections, we find BR(B -> X_s gamma) = (3.15 +_ 0.23) x 10^-4 for E_gamma > 1.6 GeV in the B-meson rest frame. The indicated error has been obtained by adding in quadrature the following uncertainties: non-perturbative (5%), parametric (3%), higher-order perturbative (3%), and the interpolation ambiguity (3%).
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spelling cern-9853912019-09-30T06:29:59Zdoi:10.1016/j.nuclphysb.2006.11.027http://cds.cern.ch/record/985391engMisiak, MSteinhauser, MNNLO QCD corrections to the $B\to X_s \gamma$ matrix elements using interpolation in $m_c$Particle Physics - PhenomenologyOne of the most troublesome contributions to the NNLO QCD corrections to B -> X_s gamma originates from three-loop matrix elements of four-quark operators. A part of this contribution that is proportional to the QCD beta-function coefficient beta_0 was found in 2003 as an expansion in m_c/m_b. In the present paper, we evaluate the asymptotic behaviour of the complete contribution for m_c >> m_b/2. The asymptotic form of the beta_0-part matches the small-m_c expansion very well at the threshold m_c = m_b/2. For the remaining part, we perform an interpolation down to the measured value of m_c, assuming that the beta_0-part is a good approximation at m_c=0. Combining our results with other contributions to the NNLO QCD corrections, we find BR(B -> X_s gamma) = (3.15 +_ 0.23) x 10^-4 for E_gamma > 1.6 GeV in the B-meson rest frame. The indicated error has been obtained by adding in quadrature the following uncertainties: non-perturbative (5%), parametric (3%), higher-order perturbative (3%), and the interpolation ambiguity (3%).hep-ph/0609241IFT-2006-16SFB-CCP-2006-37TTP-2006-24oai:cds.cern.ch:9853912006-09-22
spellingShingle Particle Physics - Phenomenology
Misiak, M
Steinhauser, M
NNLO QCD corrections to the $B\to X_s \gamma$ matrix elements using interpolation in $m_c$
title NNLO QCD corrections to the $B\to X_s \gamma$ matrix elements using interpolation in $m_c$
title_full NNLO QCD corrections to the $B\to X_s \gamma$ matrix elements using interpolation in $m_c$
title_fullStr NNLO QCD corrections to the $B\to X_s \gamma$ matrix elements using interpolation in $m_c$
title_full_unstemmed NNLO QCD corrections to the $B\to X_s \gamma$ matrix elements using interpolation in $m_c$
title_short NNLO QCD corrections to the $B\to X_s \gamma$ matrix elements using interpolation in $m_c$
title_sort nnlo qcd corrections to the $b\to x_s \gamma$ matrix elements using interpolation in $m_c$
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.nuclphysb.2006.11.027
http://cds.cern.ch/record/985391
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AT steinhauserm nnloqcdcorrectionstothebtoxsgammamatrixelementsusinginterpolationinmc