Study of Rare Semileptonic Bc+→D+νν- Decay in the Light-Cone Quark Model

We study the exclusive semileptonic rare Bc+→D+νν¯ decay in the framework of light-cone quark model. The transition form factors f+(q2) and fT(q2) are evaluated in the timelike region using the analytic continuation method in q+=0 frame. The analytic solutions of these form factors are compared with...

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Main Authors: Nisha Dhiman, Harleen Dahiya
Format: Article
Language:English
Published: Wiley 2018-01-01
Series:Advances in High Energy Physics
Online Access:http://dx.doi.org/10.1155/2018/2943406
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author Nisha Dhiman
Harleen Dahiya
author_facet Nisha Dhiman
Harleen Dahiya
author_sort Nisha Dhiman
collection DOAJ
description We study the exclusive semileptonic rare Bc+→D+νν¯ decay in the framework of light-cone quark model. The transition form factors f+(q2) and fT(q2) are evaluated in the timelike region using the analytic continuation method in q+=0 frame. The analytic solutions of these form factors are compared with the results obtained from the double pole parametric form. The branching ratio for Bc+→D+νν¯ decay is calculated and compared with the other theoretical model predictions. The predicted results in this model can be tested at the LHCb experiments in near future which will help in testing the unitarity of CKM quark mixing matrix, thus providing an insight into the phenomenon of CP violation.
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spelling doaj-art-e8fa9128911947dda884a6c128dd45632025-02-03T01:23:06ZengWileyAdvances in High Energy Physics1687-73571687-73652018-01-01201810.1155/2018/29434062943406Study of Rare Semileptonic Bc+→D+νν- Decay in the Light-Cone Quark ModelNisha Dhiman0Harleen Dahiya1Department of Physics, Dr. B. R. Ambedkar National Institute of Technology, Jalandhar 144011, IndiaDepartment of Physics, Dr. B. R. Ambedkar National Institute of Technology, Jalandhar 144011, IndiaWe study the exclusive semileptonic rare Bc+→D+νν¯ decay in the framework of light-cone quark model. The transition form factors f+(q2) and fT(q2) are evaluated in the timelike region using the analytic continuation method in q+=0 frame. The analytic solutions of these form factors are compared with the results obtained from the double pole parametric form. The branching ratio for Bc+→D+νν¯ decay is calculated and compared with the other theoretical model predictions. The predicted results in this model can be tested at the LHCb experiments in near future which will help in testing the unitarity of CKM quark mixing matrix, thus providing an insight into the phenomenon of CP violation.http://dx.doi.org/10.1155/2018/2943406
spellingShingle Nisha Dhiman
Harleen Dahiya
Study of Rare Semileptonic Bc+→D+νν- Decay in the Light-Cone Quark Model
Advances in High Energy Physics
title Study of Rare Semileptonic Bc+→D+νν- Decay in the Light-Cone Quark Model
title_full Study of Rare Semileptonic Bc+→D+νν- Decay in the Light-Cone Quark Model
title_fullStr Study of Rare Semileptonic Bc+→D+νν- Decay in the Light-Cone Quark Model
title_full_unstemmed Study of Rare Semileptonic Bc+→D+νν- Decay in the Light-Cone Quark Model
title_short Study of Rare Semileptonic Bc+→D+νν- Decay in the Light-Cone Quark Model
title_sort study of rare semileptonic bc d νν decay in the light cone quark model
url http://dx.doi.org/10.1155/2018/2943406
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AT harleendahiya studyofraresemileptonicbcdnndecayinthelightconequarkmodel