Decoding (pseudo)-scalar operators in leptonic and semileptonic B decays

Abstract We consider leptonic $$B^-\rightarrow \ell ^- {\bar{\nu }}_\ell $$ B-→ℓ-ν¯ℓ and semileptonic $${\bar{B}} \rightarrow \pi \ell ^- {\bar{\nu }}_\ell $$ B¯→πℓ-ν¯ℓ , $${\bar{B}} \rightarrow \rho \ell ^- {\bar{\nu }}_\ell $$ B¯→ρℓ-ν¯ℓ decays and present a strategy to determine short-distance coe...

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Main Authors: Giovanni Banelli, Robert Fleischer, Ruben Jaarsma, Gilberto Tetlalmatzi-Xolocotzi
Format: Article
Language:English
Published: SpringerOpen 2018-11-01
Series:European Physical Journal C: Particles and Fields
Online Access:http://link.springer.com/article/10.1140/epjc/s10052-018-6393-9
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spelling doaj-9497ca514c7b44b18d3407e6bf4a46bc2020-11-25T01:32:26ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522018-11-01781112010.1140/epjc/s10052-018-6393-9Decoding (pseudo)-scalar operators in leptonic and semileptonic B decaysGiovanni Banelli0Robert Fleischer1Ruben Jaarsma2Gilberto Tetlalmatzi-Xolocotzi3NikhefNikhefNikhefNikhefAbstract We consider leptonic $$B^-\rightarrow \ell ^- {\bar{\nu }}_\ell $$ B-→ℓ-ν¯ℓ and semileptonic $${\bar{B}} \rightarrow \pi \ell ^- {\bar{\nu }}_\ell $$ B¯→πℓ-ν¯ℓ , $${\bar{B}} \rightarrow \rho \ell ^- {\bar{\nu }}_\ell $$ B¯→ρℓ-ν¯ℓ decays and present a strategy to determine short-distance coefficients of New-Physics operators and the CKM element $$|V_{ub}|$$ |Vub| . As the leptonic channels play a central role, we illustrate this method for (pseudo)-scalar operators which may lift the helicity suppression of the corresponding transition amplitudes arising in the Standard Model. Utilising a new result by the Belle collaboration for the branching ratio of $$B^-\rightarrow \mu ^- {\bar{\nu }}_\mu $$ B-→μ-ν¯μ , we explore theoretically clean constraints and correlations between New Physics coefficients for leptonic final states with $$\mu $$ μ and $$\tau $$ τ leptons. In order to obtain stronger bounds and to extract $$|V_{ub}|$$ |Vub| , we employ semileptonic $${\bar{B}} \rightarrow \pi \ell ^- {\bar{\nu }}_\ell $$ B¯→πℓ-ν¯ℓ and $${\bar{B}} \rightarrow \rho \ell ^- {\bar{\nu }}_\ell $$ B¯→ρℓ-ν¯ℓ decays as an additional ingredient, involving hadronic form factors which are determined through QCD sum rule and lattice calculations. In addition to a detailed analysis of the constraints on the New Physics contributions following from current data, we make predictions for yet unmeasured decay observables, compare them with experimental constraints and discuss the impact of CP-violating phases of the New-Physics coefficients.http://link.springer.com/article/10.1140/epjc/s10052-018-6393-9
collection DOAJ
language English
format Article
sources DOAJ
author Giovanni Banelli
Robert Fleischer
Ruben Jaarsma
Gilberto Tetlalmatzi-Xolocotzi
spellingShingle Giovanni Banelli
Robert Fleischer
Ruben Jaarsma
Gilberto Tetlalmatzi-Xolocotzi
Decoding (pseudo)-scalar operators in leptonic and semileptonic B decays
European Physical Journal C: Particles and Fields
author_facet Giovanni Banelli
Robert Fleischer
Ruben Jaarsma
Gilberto Tetlalmatzi-Xolocotzi
author_sort Giovanni Banelli
title Decoding (pseudo)-scalar operators in leptonic and semileptonic B decays
title_short Decoding (pseudo)-scalar operators in leptonic and semileptonic B decays
title_full Decoding (pseudo)-scalar operators in leptonic and semileptonic B decays
title_fullStr Decoding (pseudo)-scalar operators in leptonic and semileptonic B decays
title_full_unstemmed Decoding (pseudo)-scalar operators in leptonic and semileptonic B decays
title_sort decoding (pseudo)-scalar operators in leptonic and semileptonic b decays
publisher SpringerOpen
series European Physical Journal C: Particles and Fields
issn 1434-6044
1434-6052
publishDate 2018-11-01
description Abstract We consider leptonic $$B^-\rightarrow \ell ^- {\bar{\nu }}_\ell $$ B-→ℓ-ν¯ℓ and semileptonic $${\bar{B}} \rightarrow \pi \ell ^- {\bar{\nu }}_\ell $$ B¯→πℓ-ν¯ℓ , $${\bar{B}} \rightarrow \rho \ell ^- {\bar{\nu }}_\ell $$ B¯→ρℓ-ν¯ℓ decays and present a strategy to determine short-distance coefficients of New-Physics operators and the CKM element $$|V_{ub}|$$ |Vub| . As the leptonic channels play a central role, we illustrate this method for (pseudo)-scalar operators which may lift the helicity suppression of the corresponding transition amplitudes arising in the Standard Model. Utilising a new result by the Belle collaboration for the branching ratio of $$B^-\rightarrow \mu ^- {\bar{\nu }}_\mu $$ B-→μ-ν¯μ , we explore theoretically clean constraints and correlations between New Physics coefficients for leptonic final states with $$\mu $$ μ and $$\tau $$ τ leptons. In order to obtain stronger bounds and to extract $$|V_{ub}|$$ |Vub| , we employ semileptonic $${\bar{B}} \rightarrow \pi \ell ^- {\bar{\nu }}_\ell $$ B¯→πℓ-ν¯ℓ and $${\bar{B}} \rightarrow \rho \ell ^- {\bar{\nu }}_\ell $$ B¯→ρℓ-ν¯ℓ decays as an additional ingredient, involving hadronic form factors which are determined through QCD sum rule and lattice calculations. In addition to a detailed analysis of the constraints on the New Physics contributions following from current data, we make predictions for yet unmeasured decay observables, compare them with experimental constraints and discuss the impact of CP-violating phases of the New-Physics coefficients.
url http://link.springer.com/article/10.1140/epjc/s10052-018-6393-9
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