Model independent analysis of $$ B^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B∗→Pℓν¯ℓ decay processes

Abstract Very compelling deviations in the recently observed lepton nonuniversality observables $$ (R_{D^{(*)}}, R_{K^{(*)}}, R_{J/\psi } )$$ (RD(∗),RK(∗),RJ/ψ) of semileptonic B meson decays from their Standard Model predictions hint towards the presence of some kind of new physics beyond it. In th...

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Main Authors: Atasi Ray, Suchismita Sahoo, Rukmani Mohanta
Format: Article
Language:English
Published: SpringerOpen 2019-08-01
Series:European Physical Journal C: Particles and Fields
Online Access:http://link.springer.com/article/10.1140/epjc/s10052-019-7183-8
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spelling doaj-f7732fd77a654217bbb3a066c97e8bc72020-11-25T03:36:41ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522019-08-0179811410.1140/epjc/s10052-019-7183-8Model independent analysis of $$ B^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B∗→Pℓν¯ℓ decay processesAtasi Ray0Suchismita Sahoo1Rukmani Mohanta2School of Physics, University of HyderabadTheoretical Physics Division, Physical Research LaboratorySchool of Physics, University of HyderabadAbstract Very compelling deviations in the recently observed lepton nonuniversality observables $$ (R_{D^{(*)}}, R_{K^{(*)}}, R_{J/\psi } )$$ (RD(∗),RK(∗),RJ/ψ) of semileptonic B meson decays from their Standard Model predictions hint towards the presence of some kind of new physics beyond it. In this regard, we investigate the effect of new physics in the semileptonic $${\bar{B}}_{d(s)}^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B¯d(s)∗→Pℓν¯ℓ decay processes, where $$P=D,\pi (D_s,K$$ P=D,π(Ds,K ), in a model independent way. We consider the presence of additional vector and scalar type interactions and constrain the corresponding new couplings by fitting $$\mathrm{Br(B_{u}^+ \rightarrow \tau ^+ \nu _\tau )}$$ Br(Bu+→τ+ντ) , $${\mathrm{\mathrm Br}(B \rightarrow \pi \tau {{\bar{\nu }}}_\tau )}$$ Br(B→πτν¯τ) , $$\mathrm{Br(B_{c}^+ \rightarrow \tau ^+ \nu _\tau )}$$ Br(Bc+→τ+ντ) , $$R_\pi ^l$$ Rπl , $$R_{D^{(*)}}$$ RD(∗) and $$R_{J/\psi }$$ RJ/ψ data. Using the constrained new parameters, we estimate the branching ratios, forward–backward asymmetry, lepton-spin asymmetry and lepton non-universality observables of $${\bar{B}}_{d,s}^{*} \rightarrow P \tau {{\bar{\nu }}}_\tau $$ B¯d,s∗→Pτν¯τ processes. We find that the branching ratios of these decay modes are sizeable and deviate significantly (for vector-type couplings) from their corresponding standard model values, which are expected to be within the reach of Run III of Large Hadron Collider experiment.http://link.springer.com/article/10.1140/epjc/s10052-019-7183-8
collection DOAJ
language English
format Article
sources DOAJ
author Atasi Ray
Suchismita Sahoo
Rukmani Mohanta
spellingShingle Atasi Ray
Suchismita Sahoo
Rukmani Mohanta
Model independent analysis of $$ B^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B∗→Pℓν¯ℓ decay processes
European Physical Journal C: Particles and Fields
author_facet Atasi Ray
Suchismita Sahoo
Rukmani Mohanta
author_sort Atasi Ray
title Model independent analysis of $$ B^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B∗→Pℓν¯ℓ decay processes
title_short Model independent analysis of $$ B^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B∗→Pℓν¯ℓ decay processes
title_full Model independent analysis of $$ B^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B∗→Pℓν¯ℓ decay processes
title_fullStr Model independent analysis of $$ B^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B∗→Pℓν¯ℓ decay processes
title_full_unstemmed Model independent analysis of $$ B^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B∗→Pℓν¯ℓ decay processes
title_sort model independent analysis of $$ b^* \rightarrow p \ell {\bar{\nu }}_\ell $$ b∗→pℓν¯ℓ decay processes
publisher SpringerOpen
series European Physical Journal C: Particles and Fields
issn 1434-6044
1434-6052
publishDate 2019-08-01
description Abstract Very compelling deviations in the recently observed lepton nonuniversality observables $$ (R_{D^{(*)}}, R_{K^{(*)}}, R_{J/\psi } )$$ (RD(∗),RK(∗),RJ/ψ) of semileptonic B meson decays from their Standard Model predictions hint towards the presence of some kind of new physics beyond it. In this regard, we investigate the effect of new physics in the semileptonic $${\bar{B}}_{d(s)}^* \rightarrow P \ell {\bar{\nu }}_\ell $$ B¯d(s)∗→Pℓν¯ℓ decay processes, where $$P=D,\pi (D_s,K$$ P=D,π(Ds,K ), in a model independent way. We consider the presence of additional vector and scalar type interactions and constrain the corresponding new couplings by fitting $$\mathrm{Br(B_{u}^+ \rightarrow \tau ^+ \nu _\tau )}$$ Br(Bu+→τ+ντ) , $${\mathrm{\mathrm Br}(B \rightarrow \pi \tau {{\bar{\nu }}}_\tau )}$$ Br(B→πτν¯τ) , $$\mathrm{Br(B_{c}^+ \rightarrow \tau ^+ \nu _\tau )}$$ Br(Bc+→τ+ντ) , $$R_\pi ^l$$ Rπl , $$R_{D^{(*)}}$$ RD(∗) and $$R_{J/\psi }$$ RJ/ψ data. Using the constrained new parameters, we estimate the branching ratios, forward–backward asymmetry, lepton-spin asymmetry and lepton non-universality observables of $${\bar{B}}_{d,s}^{*} \rightarrow P \tau {{\bar{\nu }}}_\tau $$ B¯d,s∗→Pτν¯τ processes. We find that the branching ratios of these decay modes are sizeable and deviate significantly (for vector-type couplings) from their corresponding standard model values, which are expected to be within the reach of Run III of Large Hadron Collider experiment.
url http://link.springer.com/article/10.1140/epjc/s10052-019-7183-8
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