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Measuring the CKM angle $\gamma$ at LHCb using untagged $B_s \to D \phi$ decays

The potential of a method for the measurement of $\gamma$ using untagged $B_s \to D \phi$ decays is evaluated for the LHCb experiment. In this initial study, the $D$ meson is reconstructed in well-understood decay modes such as $K\pi$, $K\pi\pi\pi$, and $KK$. With realistic assumptions on the detect...

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Autor principal: Ricciardi, S
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1243068
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author Ricciardi, S
author_facet Ricciardi, S
author_sort Ricciardi, S
collection CERN
description The potential of a method for the measurement of $\gamma$ using untagged $B_s \to D \phi$ decays is evaluated for the LHCb experiment. In this initial study, the $D$ meson is reconstructed in well-understood decay modes such as $K\pi$, $K\pi\pi\pi$, and $KK$. With realistic assumptions on the detector performance, it is found that the accuracy on $\gamma$ strongly depends on the unknown strong-phase difference, $\delta_B$. A statistical error of $10^{\circ}$ can be achieved in a nominal year of data-taking (2$fb^{-1}$) for favourable values of $\delta_B$. The main systematic uncertainties and the prospects for improving the sensitivity of this method are also briefly discussed.
id cern-1243068
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
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spelling cern-12430682019-09-30T06:29:59Zhttp://cds.cern.ch/record/1243068engRicciardi, SMeasuring the CKM angle $\gamma$ at LHCb using untagged $B_s \to D \phi$ decaysParticle Physics - ExperimentThe potential of a method for the measurement of $\gamma$ using untagged $B_s \to D \phi$ decays is evaluated for the LHCb experiment. In this initial study, the $D$ meson is reconstructed in well-understood decay modes such as $K\pi$, $K\pi\pi\pi$, and $KK$. With realistic assumptions on the detector performance, it is found that the accuracy on $\gamma$ strongly depends on the unknown strong-phase difference, $\delta_B$. A statistical error of $10^{\circ}$ can be achieved in a nominal year of data-taking (2$fb^{-1}$) for favourable values of $\delta_B$. The main systematic uncertainties and the prospects for improving the sensitivity of this method are also briefly discussed.LHCb-PUB-2010-005CERN-LHCb-PUB-2010-005oai:cds.cern.ch:12430682010-05-10
spellingShingle Particle Physics - Experiment
Ricciardi, S
Measuring the CKM angle $\gamma$ at LHCb using untagged $B_s \to D \phi$ decays
title Measuring the CKM angle $\gamma$ at LHCb using untagged $B_s \to D \phi$ decays
title_full Measuring the CKM angle $\gamma$ at LHCb using untagged $B_s \to D \phi$ decays
title_fullStr Measuring the CKM angle $\gamma$ at LHCb using untagged $B_s \to D \phi$ decays
title_full_unstemmed Measuring the CKM angle $\gamma$ at LHCb using untagged $B_s \to D \phi$ decays
title_short Measuring the CKM angle $\gamma$ at LHCb using untagged $B_s \to D \phi$ decays
title_sort measuring the ckm angle $\gamma$ at lhcb using untagged $b_s \to d \phi$ decays
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1243068
work_keys_str_mv AT ricciardis measuringtheckmanglegammaatlhcbusinguntaggedbstodphidecays