Extracting $B_s\to D_s^*\ellν_\ell$ form factors

Fuente: arXiv
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Autori principali: Boushmelev, Anastasia, Black, Matthew, Witzel, Oliver
Natura: Preprint
Pubblicazione: 2026
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author Boushmelev, Anastasia
Black, Matthew
Witzel, Oliver
author_facet Boushmelev, Anastasia
Black, Matthew
Witzel, Oliver
contents Semileptonic $B_{(s)}$ decays are of great phenomenological interest because they allow to determine e.g. CKM matrix elements or test lepton flavor universality. Taking advantage of already existing lattice data, we demonstrate the analysis steps to extract the four form factors describing exclusive semileptonic $B_s\to D_s^*\ellν_\ell$ decays using the narrow width approximation. Our data are based on RBC/UKQCD's set of 2+1 flavor gauge field ensembles with Shamir domain-wall fermion and Iwasaki gauge field action featuring inverse lattice spacings of $a^{-1}=$1.785, 2.383, and 2.785 GeV as well as pion masses between 268 and 433 MeV. Light, strange and charm quarks are simulated using domain-wall fermions, whereas bottom quarks are generated with the relativistic heavy quark (RHQ) action.
format Preprint
id arxiv_https___arxiv_org_abs_2603_27879
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Extracting $B_s\to D_s^*\ellν_\ell$ form factors
Boushmelev, Anastasia
Black, Matthew
Witzel, Oliver
High Energy Physics - Lattice
Semileptonic $B_{(s)}$ decays are of great phenomenological interest because they allow to determine e.g. CKM matrix elements or test lepton flavor universality. Taking advantage of already existing lattice data, we demonstrate the analysis steps to extract the four form factors describing exclusive semileptonic $B_s\to D_s^*\ellν_\ell$ decays using the narrow width approximation. Our data are based on RBC/UKQCD's set of 2+1 flavor gauge field ensembles with Shamir domain-wall fermion and Iwasaki gauge field action featuring inverse lattice spacings of $a^{-1}=$1.785, 2.383, and 2.785 GeV as well as pion masses between 268 and 433 MeV. Light, strange and charm quarks are simulated using domain-wall fermions, whereas bottom quarks are generated with the relativistic heavy quark (RHQ) action.
title Extracting $B_s\to D_s^*\ellν_\ell$ form factors
topic High Energy Physics - Lattice
url https://arxiv.org/abs/2603.27879