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Search for New Physics in the $B^0_s \to J/\psi\phi$ decay channel at LHCb

In the $B^0_s \to J/\psi\phi$ channel, the phase $\phi_s$ is predicted to be significantly small in the Standard Model. This observable is an excellent probe for New Physics because the $B^0_s \to \overline{B}^0_s$ mixing takes place via a loop diagram where new particles is expected to intervene. T...

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Autor principal: Khanji, Basem
Lenguaje:eng
Publicado: Marseille, CPPM 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1394605
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author Khanji, Basem
author_facet Khanji, Basem
author_sort Khanji, Basem
collection CERN
description In the $B^0_s \to J/\psi\phi$ channel, the phase $\phi_s$ is predicted to be significantly small in the Standard Model. This observable is an excellent probe for New Physics because the $B^0_s \to \overline{B}^0_s$ mixing takes place via a loop diagram where new particles is expected to intervene. These two reasons makes the $\phi_s$ parameter an excellent probe for New Physics processes. We developed a simplified selection for the 2010 data. It avoids any bias on the proper time distribution in order to reduce systematic uncertainty. In addition, we control the tagging performance for $B^0_s \to J/\psi\phi$ events using the similar $B^0_d \to J/\psi K^{*0}$ and $B^+ \to J/\psi K^+$ channels. With the 2010 data, we obtain 570 signal events in 36 pb$^{−1}$ of integrated luminosity, a tagging power of (2.2 ± 0.4) % and a proper time resolution of 50 fs. We investigated an alternative selection which maximizes the $\phi_s$ sensitivity using a proper time biasing cuts. We proposed a data-driven method to correct the proper time acceptance. We designed a fitting program to determine the $\phi_s$ phase. With the 2010 data, It is found to be: $\phi_s$ = [−2.7,−0.5] rad at 68 % of confidence. This result is compatible with the Standard Model prediction.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-13946052019-09-30T06:29:59Zhttp://cds.cern.ch/record/1394605engKhanji, BasemSearch for New Physics in the $B^0_s \to J/\psi\phi$ decay channel at LHCbParticle Physics - ExperimentIn the $B^0_s \to J/\psi\phi$ channel, the phase $\phi_s$ is predicted to be significantly small in the Standard Model. This observable is an excellent probe for New Physics because the $B^0_s \to \overline{B}^0_s$ mixing takes place via a loop diagram where new particles is expected to intervene. These two reasons makes the $\phi_s$ parameter an excellent probe for New Physics processes. We developed a simplified selection for the 2010 data. It avoids any bias on the proper time distribution in order to reduce systematic uncertainty. In addition, we control the tagging performance for $B^0_s \to J/\psi\phi$ events using the similar $B^0_d \to J/\psi K^{*0}$ and $B^+ \to J/\psi K^+$ channels. With the 2010 data, we obtain 570 signal events in 36 pb$^{−1}$ of integrated luminosity, a tagging power of (2.2 ± 0.4) % and a proper time resolution of 50 fs. We investigated an alternative selection which maximizes the $\phi_s$ sensitivity using a proper time biasing cuts. We proposed a data-driven method to correct the proper time acceptance. We designed a fitting program to determine the $\phi_s$ phase. With the 2010 data, It is found to be: $\phi_s$ = [−2.7,−0.5] rad at 68 % of confidence. This result is compatible with the Standard Model prediction.Marseille, CPPM CERN-THESIS-2011-147oai:cds.cern.ch:13946052011
spellingShingle Particle Physics - Experiment
Khanji, Basem
Search for New Physics in the $B^0_s \to J/\psi\phi$ decay channel at LHCb
title Search for New Physics in the $B^0_s \to J/\psi\phi$ decay channel at LHCb
title_full Search for New Physics in the $B^0_s \to J/\psi\phi$ decay channel at LHCb
title_fullStr Search for New Physics in the $B^0_s \to J/\psi\phi$ decay channel at LHCb
title_full_unstemmed Search for New Physics in the $B^0_s \to J/\psi\phi$ decay channel at LHCb
title_short Search for New Physics in the $B^0_s \to J/\psi\phi$ decay channel at LHCb
title_sort search for new physics in the $b^0_s \to j/\psi\phi$ decay channel at lhcb
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1394605
work_keys_str_mv AT khanjibasem searchfornewphysicsintheb0stojpsiphidecaychannelatlhcb